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== References == <div id="h1-10-siblings" class="h1-siblings"></div> <div id="Abbott--2018"></div> Abbott, F.M., 2018: Intellectual Property Rights and Climate Change: Interpreting the TRIPS Agreement for Environmentally Sound Technologies. By Wei Zhuang. ''J. Int. Econ. Law'' , '''21(1)''' , 233–236, doi:10.1093/jiel/jgy011. <div id="Abdel-Latif--2015"></div> Abdel-Latif, A., 2015: Intellectual property rights and the transfer of climate change technologies: Issues, challenges, and way forward. ''Clim. Policy'' , '''15(1)''' , 103–126, doi:10.1080/14693062.2014.951919. <div id="Abramovitz--1986"></div> Abramovitz, M., 1986: Catching Up, Forging Ahead, and Falling Behind. ''J. Econ. Hist.'' , '''46(2)''' , 385–406, doi:10.1017/S0022050700046209. <div id="Abson--2017"></div> Abson, D.J. et al., 2017: Leverage points for sustainability transformation. ''Ambio'' , '''46(1)''' , 30–39, doi:10.1007/s13280-016-0800-y. <div id="Acemoglu--2019"></div> Acemoglu, D. and P. Restrepo, 2019: Automation and New Tasks: How Technology Displaces and Reinstates Labor. ''J. Econ. Perspect.'' , '''33(2)''' , 3–30, doi:10.1257/jep.33.2.3. <div id="Acemoglu--2012"></div> Acemoglu, D., P. Aghion, L. Bursztyn, and D. Hemous, 2012: The Environment and Directed Technical Change. ''Am. Econ. Rev.'' , '''102(1)''' , 131–166, doi:10.1257/aer.102.1.131. <div id="Acemoglu--2014"></div> Acemoglu, D., U. Akcigit, D. Hanley, and W.R. Kerr, 2014: Transition to Clean Technology. ''SSRN Electron. J.'' , PIER Working Paper No. 14-044, doi:10.2139/ssrn.2534407. <div id="Adami--2017"></div> Adami, V.S., J.A.V. Antunes Júnior, and M.A. Sellitto, 2017: Regional industrial policy in the wind energy sector: The case of the State of Rio Grande do Sul, Brazil. ''Energy Policy'' , '''111''' , 18–27, doi:10.1016/j.enpol.2017.08.050. <div id="Adenle--2015"></div> Adenle, A.A., H. Azadi, and J. Arbiol, 2015: Global assessment of technological innovation for climate change adaptation and mitigation in developing world. ''J. Environ. Manage.'' , '''161''' , 261–275, doi:10.1016/j.jenvman.2015.05.040. <div id="Aghaei--2013"></div> Aghaei, J. and M.-I. Alizadeh, 2013: Demand response in smart electricity grids equipped with renewable energy sources: A review. ''Renew. Sustain. Energy Rev.'' , '''18''' , 64–72, doi:10.1016/j.rser.2012.09.019. <div id="Aghion--2019"></div> Aghion, P., 2019: Path dependence, innovation and the economics of climate change. In: ''Handbook on Green Growth'' ,[Fouquet, R. (ed.)]. Edward Elgar Publishing, Cheltenham, UK, pp. 67–83. <div id="Aghion--2005"></div> Aghion, P., P. Howitt, and D. Mayer-Foulkes, 2005: The Effect of Financial Development on Convergence: Theory and Evidence. ''Q. J. Econ.'' , '''120(1)''' , 173–222, doi:10.1162/0033553053327515. <div id="Aghion--2016"></div> Aghion, P., A. Dechezleprêtre, D. Hemous, R. Martin, and J.M. Van Reenen, 2016: Carbon Taxes, Path Dependency and Directed Technical Change: Evidence from the Auto Industry. Journal of Political Economy, Vol 124:1, pp. 1-51. doi: 10.1086/684581 <div id="Agrawala S.--2014"></div> Agrawala S., S. Klasen, R. Acosta Moreno, L. Barreto, T. Cottier, D. Guan, E.E. Gutierrez-Espeleta, A.E. Gámez Vázquez, L. Jiang, Y.G. Kim, J. Lewis, M. Messouli, M. Rauscher, N. Uddin, and A. Venables, 2014: Regional Development and Cooperation. In: ''Climate Change 2014: Mitigation of Climate Change. Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change'' [Edenhofer, O., R. Pichs-Madruga, Y. Sokona, E. Farahani, S. Kadner, K. Seyboth, A. Adler, I. Baum, S. Brunner, P. Eickemeier, B. Kriemann, J. Savolainen, S. Schlömer, C. von Stechow, T. Zwickel and J.C. Minx (eds.)]. Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA, 1083–1140. <div id="Åhman--2017"></div> Åhman, M., L.J. Nilsson, and B. Johansson, 2017: Global climate policy and deep decarbonization of energy-intensive industries. ''Clim. Policy'' , '''17(5)''' , 634–649, doi:10.1080/14693062.2016.1167009. <div id="Aklin--2013"></div> Aklin, M. and J. Urpelainen, 2013: Political Competition, Path Dependence, and the Strategy of Sustainable Energy Transitions. ''Am. J. Pol. Sci.'' , '''57(3)''' , 643–658, doi:10.1111/ajps.12002. <div id="Akorede--2010"></div> Akorede, M.F., H. Hizam, and E. Pouresmaeil, 2010: Distributed energy resources and benefits to the environment. ''Renew. Sustain. Energy Rev.'' , '''14(2)''' , 724–734, doi:10.1016/j.rser.2009.10.025. <div id="Alarcón--2015"></div> Alarcón, D. and R. Vos, 2015: Introduction: The Imperative of Sustainable Development. In: ''Technology and Innovation for Sustainable Development'' ,[Vos, R. and Alarcón, D. (eds.)]. Bloomsbury Collections, London, UK, pp. 1–14. <div id="Albert--2019"></div> Albert, M., 2019: Sustainable frugal innovation – The connection between frugal innovation and sustainability. ''J. Clean. Prod.'' , '''237''' , 117747, doi:10.1016/j.jclepro.2019.117747. <div id="Aleluia Reis--2022"></div> Aleluia Reis, L., L. Drouet, and M. Tavoni, 2022: Internalising health-economic impacts of air pollution into climate policy: a global modelling study. ''Lancet Planetary Health,'' '''6(1),''' 40-48, https://doi.org/10.1016/S2542-5196(21)00259-X. <div id="Alkemade--2012"></div> Alkemade, F. and R.A.A. Suurs, 2012: Patterns of expectations for emerging sustainable technologies. ''Technol. Forecast. Soc. Change'' , '''79(3)''' , 448–456, doi:10.1016/j.techfore.2011.08.014. <div id="Alston--2021"></div> Alston, J.M., P.G. Pardey, and X. Rao, 2021: Payoffs to a half century of CGIAR research. ''Am. J. Agric. Econ.'' , '''104 (2)''' , doi: https://doi.org/10.1111/ajae.12255 . <div id="Altantsetseg--2020"></div> Altantsetseg, P., A. Dadvari, T. Munkhdelger, G.-O. Lkhagvasuren, and M. Moslehpour, 2020: Sustainable Development of Entrepreneurial Orientation through Social Drivers. ''Sustainability'' , '''12(21)''' , 8816, doi:10.3390/SU12218816. <div id="Altenburg--2009"></div> Altenburg, T., 2009: Building inclusive innovation systems in developing countries: Challenges for IS research. In: ''Handbook of Innovation Systems and Developing Countries: Building Domestic Capabilities in a Global Setting'' [Lundvall, B.-Å., K.J. Joseph, C. Chaminade, and J. Vang, (eds.)]. Edward Elgar Publishing, London, UK, pp. 33–56. <div id="Altenburg--2012"></div> Altenburg, T. and A. Pegels, 2012: Sustainability-oriented innovation systems – managing the green transformation. ''Innov. Dev.'' , '''2(1)''' , 5–22, doi:10.1080/2157930X.2012.664037. <div id="Altenburg--2017"></div> Altenburg, T. and D. Rodrik, 2017: Green Industrial Policy: Accelerating Structural Change Towards Wealthy Green Economies. In: ''Green Industrial Policy. Concept, Policies, Country Experiences'' [Altenburg, T. and C. Assman, (eds.)]. UN Environment; German Development Institute / Deutsches Institut für Entwicklungspolitk (DIE)., Geneva, Bonn, pp. 1–20. <div id="Altieri--2017"></div> Altieri, M.A. and C.I. Nicholls, 2017: The adaptation and mitigation potential of traditional agriculture in a changing climate. ''Clim. Change'' , '''140(1)''' , 33–45, doi:10.1007/s10584-013-0909-y. <div id="Altieri--2015"></div> Altieri, M.A., C.I. Nicholls, A. Henao, and M.A. Lana, 2015: Agroecology and the design of climate change-resilient farming systems. ''Agron. Sustain. Dev.'' , '''35(3)''' , 869–890, doi:10.1007/s13593-015-0285-2. <div id="Alvarez--2015"></div> Alvarez, S. and A. Rubio, 2015: Carbon footprint in Green Public Procurement: a case study in the services sector. ''J. Clean. Prod.'' , '''93''' , 159–166, doi:10.1016/j.jclepro.2015.01.048. <div id="Ambec--2013"></div> Ambec, S., M.A. Cohen, S. Elgie, and P. Lanoie, 2013: The Porter Hypothesis at 20: Can Environmental Regulation Enhance Innovation and Competitiveness? ''Rev. Environ. Econ. Policy'' , '''7(1)''' , 2–22, doi:10.1093/reep/res016. <div id="American Energy Innovation Council--2017"></div> [[#American%20Energy%20Innovation%20Council--2017|American Energy Innovation Council, 2017]] : ''The power of innovation: Inventing the Future'' Bipartisan Policy Center, USA, 52 pp. <div id="Anadón--2012"></div> Anadón, L.D., 2012: Missions-oriented RD&D institutions in energy between 2000 and 2010: A comparative analysis of China, the United Kingdom, and the United States. ''Res. Policy'' , '''41(10)''' , 1742–1756, doi:10.1016/j.respol.2012.02.015. <div id="Anadon--2009"></div> Anadon, L.D. and J.P. Holdren, 2009: Policy for Energy Technology Innovation. In: ''Acting in Time on Energy Policy'' [Gallagher, K.S. (ed.)]. Brookings Institution Press, Washington D.C., USA. <div id="Anadon--2014"></div> Anadon, L.D., M. Bunn, and V. Narayanamurti, 2014: ''Transforming U.S. Energy Innovation'' . Cambridge University Press, New York, USA. <div id="Anadon--2016a"></div> Anadon, L.D. et al., 2016a: The pressing energy innovation challenge of the US National Laboratories. ''Nat. Energy'' , '''1(10)''' , 16117, doi:10.1038/nenergy.2016.117. <div id="Anadon--2016b"></div> Anadon, L.D. et al., 2016b: Making technological innovation work for sustainable development. ''Proc. Natl. Acad. Sci.'' , '''113(35)''' , 9682–9690, doi:10.1073/pnas.1525004113. <div id="Anadón--2017"></div> Anadón, L.D., E. Baker, and V. Bosetti, 2017: Integrating uncertainty into public energy research and development decisions. ''Nat. Energy'' , '''2(5)''' , 17071, doi:10.1038/nenergy.2017.71. <div id="Andersen--2020"></div> Andersen, A.D. and M. Gulbrandsen, 2020: The innovation and industry dynamics of technology phase-out in sustainability transitions: Insights from diversifying petroleum technology suppliers in Norway. ''Energy Res. Soc. Sci.'' , '''64''' , 101447, doi:10.1016/J.ERSS.2020.101447. <div id="Anderson--2021"></div> Anderson, K., J. Bruil, J. Chappell, C. Kiss, and M.P. Pimbert, 2021: ''Agroecology Now! Transformations Towards More Just and Sustainable Food Systems'' . Palgrave Macmillan-Springer Nature Switzerland, Cham, Switzerland, 204 pp. https://doi.org/10.1007/978-3-030-61315-0. <div id="André--2014"></div> André, F.J. and S. Smulders, 2014: Fueling growth when oil peaks: Directed technological change and the limits to efficiency. ''Eur. Econ. Rev.'' , '''69''' , 18–39, doi:10.1016/j.euroecorev.2013.10.007. <div id="Angelucci--2018"></div> Angelucci, S., F.J. Hurtado-Albir, and A. Volpe, 2018: Supporting global initiatives on climate change: The EPO’s “Y02-Y04S” tagging scheme. ''World Pat. Inf.'' , '''54''' , S85–S92, doi:10.1016/j.wpi.2017.04.006. <div id="Antosiewicz--2021"></div> Antosiewicz, M. and J. Witajewski-Baltvilks, 2021: Short- and long-run dynamics of energy demand. ''Energy Econ.'' , '''103''' , 105525, doi:10.1016/j.eneco.2021.105525. <div id="Arce--2014"></div> Arce, D., 2014: Experience, learning and returns to scale. ''South. Econ. J.'' , '''80(4)''' , 938–947.doi:10.4284/0038-4038-2013-088. <div id="Ardani--2015"></div> Ardani, K. and R. Margolis, 2015: ''Decreasing Soft Costs for Solar Photovoltaics by Improving the Interconnection Process: A Case Study of Pacific Gas and Electric'' . National Renewable Energy Laboratory (NREL), Golden, CO, USA, 19 pp. [https://www.nrel.gov/docs/fy15osti/65066.pdf https://www.nrel.gov/docs/fy15 osti/65066.pdf] . <div id="Arfanuzzaman--2021"></div> Arfanuzzaman, M., 2021: Big Data for Smart Cities and Inclusive Growth. In: ''The Palgrave Encyclopedia of Urban and Regional Futures'' [Brears, R. (ed.)]. Palgrave Macmillan, Cham, Switzerland. doi:10.1007/978-3-030-51812-7_92-1. <div id="Arocena--2020"></div> Arocena, R. and J. Sutz, 2020: The need for new theoretical conceptualizations on National Systems of Innovation, based on the experience of Latin America. ''Econ. Innov. New Technol.'' , '''29(7)''' , 814–829, doi:10.1080/10438599.2020.1719640. <div id="Arocena--2015"></div> Arocena, R., B. Göransson, and J. Sutz, 2015: Knowledge policies and universities in developing countries: Inclusive development and the “developmental university.” ''Technol. Soc.'' , '''41''' , 10–20, doi:10.1016/j.techsoc.2014.10.004. <div id="Arora--2004"></div> Arora, A., A. Fosfuri, and A. Gambardella, 2004: ''Markets for Technology: The Economics of Innovation and Corporate Strategy'' . [Arora, A., A. Fosfuri, and A. Gambardella (eds.)]. MIT Press, Cambridge, MA, USA, 352 pp. <div id="Arrow--1962a"></div> Arrow, K.J., 1962a: Economic welfare and the allocation of resources for invention. In: ''The Rate and Direction of Inventive Activity: Economic and Social Factors'' [National Bureau of Economic Research, (ed.)]. Princeton University Press, Princeton, NJ, USA, pp. 609–626. <div id="Arrow--1962b"></div> Arrow, K.J., 1962b: The economic implications of learning by doing. ''Rev. Econ. Stud.'' , '''29(3)''' , 155, doi:10.2307/2295952. <div id="Arthur--2009"></div> Arthur, W., 2009: ''The Nature of Technology'' . Free Press, New York, NY, USA, 246 pp. <div id="Arthur--1994"></div> Arthur, W.B., 1994: ''Increasing Returns and Path Dependence in the Economy'' . University of Michigan Press, Anne Arbor, MI, USA, 201 pp. <div id="Arvesen--2011"></div> Arvesen, A., R.M. Bright, and E.G. Hertwich, 2011: Considering only first-order effects? How simplifications lead to unrealistic technology optimism in climate change mitigation. ''Energy Policy'' , '''39(11)''' , 7448–7454, doi:10.1016/j.enpol.2011.09.013. <div id="Auerswald--2003"></div> Auerswald, P.E. and L.M. Branscomb, 2003: Valleys of Death and Darwinian Seas: Financing the Invention to Innovation Transition in the United States. ''J. Technol. Transf.'' , '''28''' , 227–239, doi:https://doi.org/10.1023/A:1024980525678. <div id="Avelino--2019"></div> Avelino, F. et al., 2019: Transformative social innovation and (dis)empowerment. ''Technol. Forecast. Soc. Change'' , '''145''' , 195–206, doi:10.1016/j.techfore.2017.05.002. <div id="Avgerinou--2017"></div> Avgerinou, M., P. Bertoldi, and L. Castellazzi, 2017: Trends in Data Centre Energy consumption under the European Code of Conduct for Data Centre Energy Efficiency. ''Energies'' , '''10(10)''' , 1470, doi:10.3390/en10101470. <div id="Azoulay--2019"></div> Azoulay, P., E. Fuchs, A.P. Goldstein, and M. Kearney, 2019: Funding Breakthrough Research: Promises and Challenges of the “ARPA Model.” ''Innov. Policy Econ.'' , '''19''' , 69–96, doi:10.1086/699933. <div id="Bai--2010"></div> Bai, X., B. Roberts, and J. Chen, 2010: Urban sustainability experiments in Asia: Patterns and pathways. ''Environ. Sci. Policy'' , '''13(4)''' , 312–325, doi:10.1016/J.ENVSCI.2010.03.011. <div id="Baker--2015"></div> Baker, E., O. Olaleye, and L. Aleluia Reis, 2015: Decision frameworks and the investment in R&D. ''Energy Policy'' , '''80''' , 275–285, doi:10.1016/j.enpol.2015.01.027. <div id="Bakhtiar--2020"></div> Bakhtiar, A., A. Aslani, and S.M. Hosseini, 2020: Challenges of diffusion and commercialization of bioenergy in developing countries. ''Renew. Energy'' , '''145''' , 1780–1798, doi:10.1016/j.renene.2019.06.126. <div id="Baller--2016"></div> Baller, S., S. Dutta, and B. Lanvin, 2016: ''The Global Information Technology Report 2016 Innovating in the Digital Economy'' . World Economic Forum, Geneva, Switzerland, 307 pp. <div id="Balvanera--2017"></div> Balvanera, P. et al., 2017: Interconnected place-based social–ecological research can inform global sustainability. ''Curr. Opin. Environ. Sustain.'' , '''29''' , 1–7, doi:10.1016/J.COSUST.2017.09.005. <div id="Barbieri--2015"></div> Barbieri, N., 2015: Investigating the impacts of technological position and European environmental regulation on green automotive patent activity. ''Ecol. Econ.'' , '''117''' , 140–152, doi:10.1016/j.ecolecon.2015.06.017. <div id="Barker--2009"></div> Barker, T., A. Dagoumas, and J. Rubin, 2009: The macroeconomic rebound effect and the world economy. ''Energy Effic.'' , '''2(4)''' , 411–427, doi:10.1007/s12053-009-9053-y. <div id="Baron--2016"></div> Baron, R., 2016: ''The Role of Public Procurement in Low-carbon Innovation'' . OECD, Paris, France, 32 pp. [https://www.oecd.org/sd-roundtable/papersandpublications/The%20Role%20of%20Public%20Procurement%20in%20Low-carbon%20Innovation.pdf https://www.oecd.org/sd-roundtable/papersandpublications/The] Role of Public Procurement in Low-carbon Innovation.pdf . <div id="Barron-Gafford--2019"></div> Barron-Gafford, G.A. et al., 2019: Agrivoltaics provide mutual benefits across the food–energy–water nexus in drylands. ''Nat. Sustain.'' , '''2(9)''' , 848–855, doi:10.1038/s41893-019-0364-5. <div id="Basel--2020"></div> Basel, B., G. Goby, and J. Johnson, 2020: Community-based adaptation to climate change in villages of Western Province, Solomon Islands. ''Mar. Pollut. Bull.'' , '''156''' , 111266, doi:10.1016/j.marpolbul.2020.111266. <div id="Basu--1998"></div> Basu, S. and D.N. Weil, 1998: Appropriate Technology and Growth. ''Q. J. Econ.'' , '''113(4)''' , 1025–1054, doi:10.1162/003355398555829. <div id="Baudry--2019"></div> Baudry, M. and C. Bonnet, 2019: Demand-Pull Instruments and the Development of Wind Power in Europe: A Counterfactual Analysis. ''Environ. Resour. Econ.'' , '''73(2)''' , 385–429, doi:10.1007/s10640-018-0267-3. <div id="Bauer--2017"></div> Bauer, F., L. Coenen, T. Hansen, K. McCormick, and Y.V. Palgan, 2017: Technological innovation systems for biorefineries: A review of the literature. ''Biofuels, Bioprod. Biorefining'' , '''11(3)''' , 534–548, doi:10.1002/bbb.1767. <div id="Bayer--2016"></div> Bayer, P., J. Urpelainen, and A. Xu, 2016: Explaining differences in sub-national patterns of clean technology transfer to China and India. ''Int. Environ. Agreements Polit. Law Econ.'' , '''16(2)''' , 261–283, doi:10.1007/s10784-014-9257-2. <div id="BEE--2020"></div> [[#BEE--2020|BEE, 2020]] : ''Impact of Energy Efficiency Measures for the Year 2018–19'' . Bureau of Energy Efficiency (BEE), New Dehli, India, 148 pp. [https://beeindia.gov.in/sites/default/files/BEE%20Final%20Report_1.pdf https://beeindia.gov.in/sites/default/files/BEE] Fina l Report_1.pdf . <div id="Behuria--2020"></div> Behuria, P., 2020: The politics of late late development in renewable energy sectors: Dependency and contradictory tensions in India’s National Solar Mission. ''World Dev.'' , '''126''' , 104726, doi:10.1016/j.worlddev.2019.104726. <div id="Bekkers--2017"></div> Bekkers, R., 2017: Where patents and standards come together. In: ''Handbook of Standards and Innovation'' [Hawkins, R., K. Blind, and R. Page (eds.)]. Edward Elgar Publishing, London, UK, and New York, NY, USA, pp. 227–251. <div id="Bellesi--2005"></div> Bellesi, F., D. Lehrer, and A. Tal, 2005: Comparative advantage: The impact of ISO 14001 environmental certification on exports. ''Environ. Sci. Technol.'' , '''39(7)''' , 1943–1953, doi:10.1021/es0497983. <div id="Bento--2016"></div> Bento, N. and C. Wilson, 2016: Measuring the duration of formative phases for energy technologies. ''Environ. Innov. Soc. Transitions'' , '''21''' , 95–112, doi:10.1016/j.eist.2016.04.004. <div id="Bento--2018"></div> Bento, N., C. Wilson, and L.D. Anadon, 2018: Time to get ready: Conceptualizing the temporal and spatial dynamics of formative phases for energy technologies. ''Energy Policy'' , '''119''' , 282–293, doi:10.1016/j.enpol.2018.04.015. <div id="Bergek--2008"></div> Bergek, A., S. Jacobsson, B. Carlsson, S. Lindmark, and A. Rickne, 2008: Analyzing the functional dynamics of technological innovation systems: A scheme of analysis. ''Res. Policy'' , '''37(3)''' , 407–429, doi:10.1016/j.respol.2007.12.003. <div id="Bergek--2010"></div> Bergek, A., S. Jacobsson, M. Hekkert, and K. Smith, 2010: Functionality of innovation systems as a rationale for and guide to innovation policy. In: ''The Theory and Practice of Innovation Policy: An International Research Handbook'' .[Smits, R., Kulhman, S., and Shapira, P. (eds.)]. Edward Elgar Publishing, Cheltenham, UK, 496pp. ISBN 978-1 84542-848-8. <div id="Bergek--2015"></div> Bergek, A. et al., 2015: Technological innovation systems in contexts: Conceptualizing contextual structures and interaction dynamics. ''Environ. Innov. Soc. Transitions'' , '''16''' , 51–64, doi:10.1016/j.eist.2015.07.003. <div id="Bernauer--2016"></div> Bernauer, T. and L.F. McGrath, 2016: Simple reframing unlikely to boost public support for climate policy. ''Nat. Clim. Chang.'' , '''6(7)''' , 680–683, doi:10.1038/nclimate2948. <div id="Bessen--2009"></div> Bessen, J. and M.J. Meurer, 2009: Patent failure: How judges, bureaucrats, and lawyers put innovators at risk. ''Choice Rev. Online'' , '''46(06)''' , 46-3523-46–3523, doi:10.5860/CHOICE.46-3523. <div id="Bettencourt--2013"></div> Bettencourt, L.M.A., J.E. Trancik, and J. Kaur, 2013: Determinants of the Pace of Global Innovation in Energy Technologies. ''PLoS One'' , '''8(10''' ), e67864, doi:10.1371/journal.pone.0067864. <div id="Bhamidipati--2021"></div> Bhamidipati, P.L. and U.E. Hansen, 2021: Unpacking local agency in China–Africa relations: Frictional encounters and development outcomes of solar power in Kenya. ''Geoforum'' , '''119''' , 206–217, doi:10.1016/j.geoforum.2020.12.010. <div id="Bhamidipati--2019"></div> Bhamidipati, P.L., U. Elmer Hansen, and J. Haselip, 2019: Agency in transition: The role of transnational actors in the development of the off-grid solar PV regime in Uganda. ''Environ. Innov. Soc. Transitions'' , '''33''' , 30–44, doi:10.1016/j.eist.2019.02.001. <div id="Bhattacharya--1984"></div> Bhattacharya, G., 1984: Learning and the Behavior of Potential Entrants. ''RAND J. Econ.'' , '''15(2)''' , 281, doi:10.2307/2555681. <div id="Biadgleng--2009"></div> Biadgleng, E.T., 2009: ''Compulsory Licenses & Government Use'' . UNCTAD, Paris, France, pp 24. <div id="Bibri--2019a"></div> Bibri, S.E., 2019a: Data-driven smart sustainable urbanism: The intertwined societal factors underlying its materialization, success, expansion, and evolution. ''Geoj. 2019 861'' , '''86(1)''' , 43–68, doi:10.1007/S10708-019-10061-X. <div id="Bibri--2019b"></div> Bibri, S.E., 2019b: The anatomy of the data-driven smart sustainable city: Instrumentation, datafication, computerization and related applications. ''J. Big Data 2019 61'' , '''6(1)''' , 1–43, doi:10.1186/S40537-019-0221-4. <div id="Bieser--2018"></div> Bieser, J. and L. Hilty, 2018: Assessing Indirect Environmental Effects of Information and Communication Technology (ICT): A Systematic Literature Review. ''Sustainability'' , '''10(8)''' , 2662, doi:10.3390/su10082662. <div id="Binz--2017"></div> Binz, C. and B. Truffer, 2017: Global Innovation Systems – A conceptual framework for innovation dynamics in transnational contexts. ''Res. Policy'' , '''46(7)''' , 1284–1298, doi:10.1016/j.respol.2017.05.012. <div id="Binz--2018"></div> Binz, C. and L.D. Anadon, 2018: Unrelated diversification in latecomer contexts: Emergence of the Chinese solar photovoltaics industry. ''Environ. Innov. Soc. Transitions'' , '''28''' , 14–34, doi:10.1016/j.eist.2018.03.005. <div id="Binz--2012"></div> Binz, C., B. Truffer, L. Li, Y. Shi, and Y. Lu, 2012: Conceptualizing leapfrogging with spatially coupled innovation systems: The case of onsite wastewater treatment in China. ''Technol. Forecast. Soc. Change'' , '''79(1)''' , 155–171, doi:10.1016/j.techfore.2011.08.016. <div id="Biresselioglu--2020"></div> Biresselioglu, M.E., M.H. Demir, M. Demirbag Kaplan, and B. Solak, 2020: Individuals, collectives, and energy transition: Analysing the motivators and barriers of European decarbonisation. ''Energy Res. Soc. Sci.'' , '''66''' , 101493, doi:10.1016/J.ERSS.2020.101493. <div id="Bisaga--2021"></div> Bisaga, I., P. Parikh, J. Tomei, and L.S. To, 2021: Mapping synergies and trade-offs between energy and the sustainable development goals: A case study of off-grid solar energy in Rwanda. ''Energy Policy'' , '''149''' , 112028, doi:10.1016/J.ENPOL.2020.112028. <div id="Black--2014"></div> Black, G., D. Holley, D. Solan, and M. Bergloff, 2014: Fiscal and economic impacts of state incentives for wind energy development in the Western United States. ''Renew. Sustain. Energy Rev.'' , '''34''' , 136–144, doi:10.1016/j.rser.2014.03.015. <div id="Blieden--1999"></div> Blieden, R., 1999: ''Cherry Hill Revisited –A retrospective on the creation of a national plan for photovoltaic conversion of solar energy for terrestrial applications.'' AIP Conference Proceedings, '''462 (1)''' , pp.796–799. https://doi.org/10.1063/1.57945. <div id="Bloess--2019"></div> Bloess, A., 2019: Impacts of heat sector transformation on Germany’s power system through increased use of power-to-heat. ''Appl. Energy'' , '''239''' , 560–580, doi:https://doi.org/10.1016/j.apenergy.2019.01.101. <div id="Bodin--2017"></div> Bodin, Ö., 2017: Collaborative environmental governance: Achieving collective action in social-ecological systems. ''Science'' , '''357(6352)''' , eaan1114, doi:10.1126/science.aan1114. <div id="Böhringer--2010"></div> Böhringer, C. and K.E. Rosendahl, 2010: Green promotes the dirtiest: On the interaction between black and green quotas in energy markets. ''J. Regul. Econ.'' , '''37(3)''' , 316–325, doi:10.1007/s11149-010-9116-1. <div id="Boiral--2018"></div> Boiral, O., L. Guillaumie, I. Heras-Saizarbitoria, and C.V. Tayo Tene, 2018: Adoption and outcomes of ISO 14001: A systematic review. ''Int. J. Manag. Rev.'' , '''20(2)''' , 411–432, doi:10.1111/ijmr.12139. <div id="Bonvillian--2018"></div> Bonvillian, W.B., 2018: DARPA and its ARPA-E and IARPA clones: A unique innovation organization model. ''Ind. Corp. Chang.'' , '''27(5)''' , 897–914, doi:10.1093/icc/dty026. <div id="Bonvillian--2011"></div> Bonvillian, W.B. and R. Van Atta, 2011: ARPA-E and DARPA: Applying the DARPA model to energy innovation. ''J. Technol. Transf.'' , '''36(5)''' , 469–513, doi:10.1007/s10961-011-9223-x. <div id="Boodoo--2018"></div> Boodoo, Z., F. Mersmann, and K.H. Olsen, 2018: The implications of how climate funds conceptualize transformational change in developing countries. ''Clim. Dev.'' , '''10(8)''' , 673–686, doi:10.1080/17565529.2018.1442788. <div id="Bosetti--2021"></div> Bosetti, V., 2021: Integrated Assessment Models for Climate Change. In: ''Oxford Research Encyclopedia of Economics and Finance'' , Oxford University Press, Oxford, UK. <div id="Bosetti--2017"></div> Bosetti, V., M. Heugues, and A. Tavoni, 2017: Luring others into climate action: Coalition formation games with threshold and spillover effects. ''Oxf. Econ. Pap.'' , '''69(2)''' , 410–431, doi:10.1093/oep/gpx017. <div id="Bowen--2013"></div> Bowen, W.M., S. Park, and J.A. Elvery, 2013: Empirical Estimates of the Influence of Renewable Energy Portfolio Standards on the Green Economies of States. ''Econ. Dev. Q.'' , '''27(4)''' , doi:10.1177/0891242413491316. <div id="Boyd--2012"></div> Boyd, A., 2012: Informing international UNFCCC technology mechanisms from the ground up: Using biogas technology in South Africa as a case study to evaluate the usefulness of potential elements of an international technology agreement in the UNFCCC negotiations process. ''Energy Policy'' , '''51''' , 301–311, doi:10.1016/j.enpol.2012.08.020. <div id="Boyd--2018"></div> Boyd, P. and L. Schweber, 2018: Unintended consequences: Institutional artefacts, closure mechanisms and the performance gap. ''Build. Res. Inf.'' , '''46(1)''' , 10–22, doi:10.1080/09613218.2017.1331096. <div id="Brandão--2019"></div> Brandão, L.G.L. and P. Ehrl, 2019: International R&D spillovers to the electric power industries. ''Energy'' , '''182''' , 424–432, doi:10.1016/j.energy.2019.06.046. <div id="Brandão Santana--2015"></div> Brandão Santana, N., D.A.D.N. Rebelatto, A.E. Périco, H.F. Moralles, and W. Leal Filho, 2015: Technological innovation for sustainable development: An analysis of different types of impacts for countries in the BRICS and G7 groups. ''Int. J. Sustain. Dev. World Ecol.'' , '''22(5)''' , 1–12, doi:10.1080/13504509.2015.1069766. <div id="Branstetter--2006"></div> Branstetter, L., 2006: Is foreign direct investment a channel of knowledge spillovers? Evidence from Japan’s FDI in the United States. ''J. Int. Econ.'' , '''68(2)''' , 325–344, doi:10.1016/j.jinteco.2005.06.006. <div id="Breetz--2018"></div> Breetz, H., M. Mildenberger, and L. Stokes, 2018: The political logics of clean energy transitions. ''Bus. Polit.'' , '''20(4)''' , 492–522, doi:10.1017/bap.2018.14. <div id="Brennen--2016"></div> Brennen, J.S. and D. Kreiss, 2016: Digitalization. In: ''The International Encyclopedia of Communication Theory and Philosophy'' [Jensen, K.B. and R.. Craig, (eds.)], Wiley Online Library, pp. 1–11. https://doi.org/10.1002/9781118766804.wbiect111. <div id="Breschi--1997"></div> Breschi, S. and F. Malerba, 1997: Sectoral Innovation Systems: Technological Regimes, Schumpeterian Dynamics, and Spatial Boundaries. In: ''Systems of Innovation Technologies, Institutions and Organisations'' [Edquist, C., (ed.)], Pinter Publishers, London, pp. 41–60. <div id="Bringezu--2019"></div> Bringezu, S., 2019: Toward Science-Based and Knowledge-Based Targets for Global Sustainable Resource Use. ''Resources'' , '''8(3)''' , 140, doi:10.3390/resources8030140. <div id="Brooks--1980"></div> Brooks, H., 1980: Technology, Evolution and Purpose. ''Daedalus'' , '''109(1)''' , 65–81. <div id="Brooks--2011"></div> Brooks, S. and M. Loevinsohn, 2011: Shaping agricultural innovation systems responsive to food insecurity and climate change. ''Nat. Resour. Forum'' , '''35(3)''' , 185–200, doi:10.1111/j.1477-8947.2011.01396.x. <div id="Brown--2009"></div> Brown, J. and C. Hendry, 2009: Public demonstration projects and field trials: Accelerating commercialisation of sustainable technology in solar photovoltaics. ''Energy Policy'' , '''37(7)''' , 2560–2573, doi:10.1016/j.enpol.2009.01.040. <div id="Brown--1995"></div> Brown, M.B., W. Canzler, F. Fischer, and A. Knie, 1995: Technological Innovation through Environmental Policy: California’s Zero-Emission Vehicle Regulation. ''Public Product. Manag. Rev.'' , '''19(1)''' , 77, doi:10.2307/3380822. <div id="Bryden--2017"></div> Bryden, J. and S.S. Gezelius, 2017: Innovation as if people mattered: The ethics of innovation for sustainable development. ''Innov. Dev.'' , '''7(1)''' , 101–118, doi:10.1080/2157930X.2017.1281208. <div id="Buckley--2020"></div> Buckley, P., 2020: Prices, information and nudges for residential electricity conservation: A meta-analysis. ''Ecol. Econ.'' , '''172''' , 106635, doi:10.1016/j.ecolecon.2020.106635. <div id="Bukkens--2020"></div> Bukkens, S. et al., 2020: ''The Nexus Times'' . [Bukkens, S., T. Dunlop, L.J. Di Felice, Z. Kovacic, I.W. Nilsen, R. Strand, T. Völker, and L. Zamarioli, (eds.)]. Megaloceros Press, Bergen, Norway, pp.189. ISBN-13: 978-82-91851-05-1. <div id="Bulkeley--2014"></div> Bulkeley, H., V.C. Broto, and A. Maassen, 2014: Low-carbon transitions and the reconfiguration of urban infrastructure. ''Urban Stud.'' , '''51(7)''' , 1471–1486, doi:10.1177/0042098013500089. <div id="Bumpus--2017"></div> Bumpus, A. and S. Comello, 2017: Emerging clean energy technology investment trends. ''Nat. Clim. Chang.'' , '''7(6)''' , 382–385, doi:10.1038/nclimate3306. <div id="Bunn--2014"></div> Bunn, M., L.D. Anadon, and V. Narayanamurti, 2014: The need to transform U.S. energy innovation. In: ''Transforming U.S. Energy Innovation'' [Anadon, L.D., M. Bunn, and V. Narayanamurti, (eds.)], Cambridge University Press, Cambridge, UK, pp. 14–16. <div id="Burch--2014"></div> Burch, S., A. Shaw, A. Dale, and J. Robinson, 2014: Triggering transformative change: A development path approach to climate change response in communities. ''Climate Policy,'' '''14(4)''' , 467–487, doi:10.1080/14693062.2014.876342. <div id="Bürer--2009"></div> Bürer, M.J. and R. Wüstenhagen, 2009: Which renewable energy policy is a venture capitalist’s best friend? Empirical evidence from a survey of international cleantech investors. ''Energy Policy'' , '''37(12)''' , 4997–5006, doi:10.1016/j.enpol.2009.06.071. <div id="Calel--2016"></div> Calel, R. and A. Dechezleprêtre, 2016: Environmental Policy and Directed Technological Change: Evidence from the European Carbon Market. ''Rev. Econ. Stat.'' , '''98(1)''' , 173–191, doi:10.1162/REST_A_00470. <div id="Calzadilla--2018"></div> Calzadilla, P.V. and R. Mauger, 2018: The UN’s new sustainable development agenda and renewable energy: The challenge to reach SDG7 while achieving energy justice. ''J. Energy & Nat. Resour. Law'' , '''36(2)''' , 233–254, doi:10.1080/02646811.2017.1377951. <div id="Caravella--2020"></div> Caravella, S. and F. Crespi, 2020: Unfolding heterogeneity: The different policy drivers of different eco-innovation modes. ''Environ. Sci. Policy'' , '''114''' , 182–193, doi:10.1016/j.envsci.2020.08.003. <div id="Carlsson--1991"></div> Carlsson, B. and R. Stankiewicz, 1991: On the nature, function and composition of technological systems. ''J. Evol. Econ.'' , '''1(2)''' , 93–118, doi:10.1007/BF01224915. <div id="Caselli--2006"></div> Caselli, F. and W.J. Coleman, 2006: The World Technology Frontier. ''Am. Econ. Rev.'' , '''96(3)''' , 499–522, doi:10.1257/aer.96.3.499. <div id="Cassman--2020"></div> Cassman, K.G. and P. Grassini, 2020: A global perspective on sustainable intensification research. ''Nat. Sustain.'' , '''3(4)''' , 262–268, doi:10.1038/s41893-020-0507-8. <div id="Castán Broto--2013"></div> Castán Broto, V. and H. Bulkeley, 2013: A survey of urban climate change experiments in 100 cities. ''Glob. Environ. Chang.'' , '''23(1)''' , 92–102, doi:10.1016/J.GLOENVCHA.2012.07.005. <div id="Cerutti--2016"></div> Cerutti, A.K., S. Contu, F. Ardente, D. Donno, and G.L. Beccaro, 2016: Carbon footprint in green public procurement: Policy evaluation from a case study in the food sector. ''Food Policy'' , '''58''' , 82–93, doi:10.1016/j.foodpol.2015.12.001. <div id="Chaffin--2016"></div> Chaffin, B.C. et al., 2016: Transformative Environmental Governance. ''Annu. Rev. Environ. Resour.'' , '''41(1)''' , 399–423, doi:10.1146/annurev-environ-110615-085817. <div id="Chaminade--2010"></div> Chaminade, C. and C. Esquist, 2010: Rationales for Public Policy Intervention in the Innovation Process: Systems of Innovation Approach. In: ''The Theory and Practice of Innovation Policy'' [Smits, R.E. and P. Shapira, (eds.)], Edward Elgar Publishing, London, UK and New York, NY, USA, 20 pp. <div id="Chan--2016"></div> Chan, G. and L. Diaz Anadon, 2016: ''Improving Decision Making for Public R&D Investment in Energy: Utilizing Expert Elicitation in Parametric Models'' . Cambridge Working Papers in Economics, Cambridge University, Cambridge, UK, 55 pp. <div id="Chan--2017"></div> Chan, G., A.P. Goldstein, A. Bin-Nun, L. Diaz Anadon, and V. Narayanamurti, 2017: Six principles for energy innovation. ''Nature'' , '''552(7683)''' , 25–27, doi:10.1038/d41586-017-07761-0. <div id="Charmes--2016"></div> Charmes, J., 2016: The Informal Economy: Definitions, Size, Contribution and Main Characteristics. In: ''The Informal Economy in Developing Nations'' [Kraemer-Mbula, E. and S. Wunsch-Vincent, (eds.)], Cambridge University Press, Cambridge, UK, pp. 13–52. <div id="Chaudhary--2012"></div> Chaudhary, A., A.D. Sagar, and A. Mathur, 2012: Innovating for energy efficiency: A perspective from India. ''Innov. Dev.'' , '''2(1)''' , 45–66, doi:10.1080/2157930X.2012.667212. <div id="Chaudhary--2015"></div> Chaudhary, A., C. Krishna, and A. Sagar, 2015: Policy making for renewable energy in India: Lessons from wind and solar power sectors. ''Clim. Policy'' , '''15(1, SI)''' , 58–87, doi:10.1080/14693062.2014.941318. <div id="Chlingaryan--2018"></div> Chlingaryan, A., S. Sukkarieh, and B. Whelan, 2018: Machine learning approaches for crop yield prediction and nitrogen status estimation in precision agriculture: A review. ''Comput. Electron. Agric.'' , '''151''' , 61–69, doi:10.1016/j.compag.2018.05.012. <div id="Choi--2019"></div> Choi, H. and H. Zo, 2019: Assessing the efficiency of national innovation systems in developing countries. ''Sci. Public Policy'' , '''46(4)''' , 530–540, doi:10.1093/scipol/scz005. <div id="Christensen--1985"></div> Christensen, E., 1985: ''Electricity from photovoltaic solar cells. Flat-Plate Solar Array Project of the US Department of Energy’s National Photovoltaics Program: 10 years of progress'' . NASA Technical Reports Server, US, 102 pp. [https://ntrs.nasa.gov/citations/19880002806 https://ntrs.nasa.gov/citatio ns/19880002806] . <div id="Cinner--2018"></div> Cinner, J.E. et al., 2018: Building adaptive capacity to climate change in tropical coastal communities. ''Nat. Clim. Chang.'' , '''8(2)''' , 117–123, doi:10.1038/s41558-017-0065-x. <div id="Clark--2016"></div> Clark, W.C., L. van Kerkhoff, L. Lebel, and G.C. Gallopin, 2016: Crafting usable knowledge for sustainable development. ''Proc. Natl. Acad. Sci.'' , '''113(17)''' , 4570–4578, doi:10.1073/pnas.1601266113. <div id="Cohen--2018"></div> Cohen, M.A. and A. Tubb, 2018: The Impact of Environmental Regulation on Firm and Country Competitiveness: A Meta-analysis of the Porter Hypothesis. ''J. Assoc. Environ. Resour. Econ.'' , '''5(2)''' , 371–399, doi:10.1086/695613. <div id="Cohen--2000"></div> Cohen, W., R. Nelson, and J. Walsh, 2000: ''Protecting Their Intellectual Assets: Appropriability Conditions and Why U.S. Manufacturing Firms Patent (or Not)'' . National Bureau of Economic Research, Cambridge, MA, USA, 50 pp. <div id="Cohen--2002"></div> Cohen, W.M., A. Goto, A. Nagata, R.R. Nelson, and J.P. Walsh, 2002: R&D spillovers, patents and the incentives to innovate in Japan and the United States. ''Res. Policy'' ,, doi:10.1016/S0048-7333 '''(02)''' 00068-9. <div id="Consoli--2016"></div> Consoli, D., G. Marin, A. Marzucchi, and F. Vona, 2016: Do green jobs differ from non-green jobs in terms of skills and human capital? ''Res. Policy'' , '''45(5)''' , 1046–1060, doi:10.1016/j.respol.2016.02.007. <div id="Conti--2018"></div> Conti, C., M.L. Mancusi, F. Sanna-Randaccio, R. Sestini, and E. Verdolini, 2018: Transition towards a green economy in Europe: Innovation and knowledge integration in the renewable energy sector. ''Res. Policy'' , '''47(10)''' , 1996–2009, doi:10.1016/j.respol.2018.07.007. <div id="Contreras--2015"></div> Contreras, J.L., 2015: A brief history of frand: Analyzing current debates in standard setting and antitrust through a historical lens. ''Antitrust Law J.'' , '''80(39)''' , 82, doi:10.2139/ssrn.2374983. <div id="Cooke--1997"></div> Cooke, P., M. Gomez Uranga, and G. Etxebarria, 1997: Regional innovation systems: Institutional and organisational dimensions. ''Res. Policy'' , '''26(''' '''4–5''' ''')''' , 475–491, doi:10.1016/S0048-7333 '''(97)''' 00025-5. <div id="Corey--2014"></div> Corey, A., 2014: Diffusion of Green Technology: A Survey. ''Int. Rev. Environ. Resour. Econ.'' , '''7(1)''' , 1–33, doi:10.1561/101.00000055. <div id="Correa--2020"></div> Correa, C.M., J.I. Correa, and B. De Jonge, 2020: The status of patenting plants in the Global South. ''J. World Intellect. Prop.'' , '''23(''' '''1–2''' ''')''' , 121–146, doi:10.1111/jwip.12143. <div id="Corsatea--2016"></div> Corsatea, T.D., 2016: Localised knowledge, local policies and regional innovation activity for renewable energy technologies: Evidence from Italy. ''Pap. Reg. Sci.'' , '''95(3)''' , 443–466, doi:10.1111/pirs.12136. <div id="Corsi--2020"></div> Corsi, A., R.N. Pagani, J.L. Kovaleski, and V. Luiz da Silva, 2020: Technology transfer for sustainable development: Social impacts depicted and some other answers to a few questions. ''J. Clean. Prod.'' , '''245''' , 118522, doi:10.1016/j.jclepro.2019.118522. <div id="Côte--2019"></div> Côte, F.-X. et al., 2019: ''The agroecological transition of agricultural systems in the Global South'' . [Côte, F.-X., E. Poirier-Magona, S. Perret, P. Roudier, B. Rapidel, and M.-C. Thirion, (eds.)]. éditions Quae, Versailles, France, 360pp. <div id="Coughlan de Perez--2015"></div> Coughlan de Perez, E. et al., 2015: Forecast-based financing: An approach for catalyzing humanitarian action based on extreme weather and climate forecasts. ''Nat. Hazards Earth Syst. Sci.'' , '''15(4)''' , 895–904, doi:10.5194/nhess-15-895-2015. <div id="Cowan--1990"></div> Cowan, R., 1990: Nuclear Power Reactors: A Study in Technological Lock-in. ''J. Econ. Hist.'' , '''50(3)''' , 541–567, doi:10.1017/S0022050700037153. <div id="Crabb--2010"></div> Crabb, J.M. and D.K.N. Johnson, 2010: Fueling Innovation: The Impact of Oil Prices and CAFE Standards on Energy-Efficient Automotive Technology. ''Energy J.'' , '''31(1)''' , doi:10.5547/ISSN0195-6574-EJ-Vol31-No1-9. <div id="Craglia--2018"></div> Craglia, M. et al., 2018: ''Artificial Intelligence: A European Perspective'' . Publications Office of the European Union, Brussels, pp 137. <div id="CREWS--2016"></div> [[#CREWS--2016|CREWS, 2016]] : ''CREWS Operational Procedures Note No.1: Programming and Project Development'' .Climate Risk & Early Warning Systems (CREWS), Geneva, 11 pp. [https://ane4bf-datap1.s3-eu-west-1.amazonaws.com/wmocrews/s3fs-public/ckeditor/files/Revised_Operational_Procedures_Note_No1_Programming_and_Project_Development.pdf?OlO3Yfu.Sp1.aIiGNEBPbphkoloVjhnN https://ane4bf-datap1.s3-eu-west-1.amazonaws.com/wmocrews/s3fs-public/ckeditor/files/Revised_Operational_Procedures_Note_No1_Programming_and_Project_Development.pdf?OlO3Yfu.Sp1.aIiGNE BPbphkoloVjhnN] . <div id="Criqui--2015"></div> Criqui, P., S. Mima, P. Menanteau, and A. Kitous, 2015: Mitigation strategies and energy technology learning: An assessment with the POLES model. ''Technol. Forecast. Soc. Change'' , '''90''' , 119–136, doi:10.1016/j.techfore.2014.05.005. <div id="Cross--2018"></div> Cross, J. and D. Murray, 2018: The afterlives of solar power: Waste and repair off the grid in Kenya. ''Energy Res. Soc. Sci.'' , '''44''' , 100–109, doi:10.1016/j.erss.2018.04.034. <div id="CTCN--2019"></div> [[#CTCN--2019|CTCN, 2019]] : ''Programme of Work 2019-2022: Climate Technology Centre and Network'' . UN Environment, UNFCCC, UNIDO. Published Online. 22 pp. https://www.ctc-n.org/sites/www.ctc-n.org/files/ctcn_programme_of_work_2019-2022.pdf (Accessed August 25, 2021). <div id="Cui--2020"></div> Cui, J., X. Liu, Y. Sun, and H. Yu, 2020: Can CDM projects trigger host countries’ innovation in renewable energy? Evidence of firm-level dataset from China. ''Energy Policy'' , '''139''' , 111349, doi:10.1016/j.enpol.2020.111349. <div id="D’Auvergne--2017"></div> D’Auvergne, C. and M. Nummelin, 2017: Capacity-Building (Article 11). In: ''The Paris Agreement on Climate Change: Analysis and Commentary'' [Klein, D., M. Pia Carazo, M. Doelle, J. Bulmer, and A. Higham, (eds.)], Oxford University Press, Oxford, UK, pp 277–291. <div id="da Silva--2019"></div> da Silva, V.L., J.L. Kovaleski, and R.N. Pagani, 2019: Technology transfer in the supply chain oriented to industry 4.0: A literature review. ''Technol. Anal. Strateg. Manag.'' , '''31(5)''' , 546–562, doi:10.1080/09537325.2018.1524135. <div id="Dabbagh--2019"></div> Dabbagh, M., B. Hamdaoui, A. Rayes, and M. Guizani, 2019: Shaving Data Center Power Demand Peaks Through Energy Storage and Workload Shifting Control. ''IEEE Trans. Cloud Comput.'' , '''7''' , 1095–1108. <div id="Dai--2015"></div> Dai, Y. and L. Xue, 2015: China’s policy initiatives for the development of wind energy technology. ''Clim. Policy'' , '''15(1)''' , 30–57, doi:10.1080/14693062.2014.863549. <div id="Dana--2021"></div> Dana, L.P., C. Gurău, F. Hoy, V. Ramadani, and T. Alexander, 2021: Success factors and challenges of grassroots innovations: Learning from failure. ''Technol. Forecast. Soc. Change'' , '''164''' , 119600, doi:10.1016/J.TECHFORE.2019.03.009. <div id="Darmani--2014"></div> Darmani, A., N. Arvidsson, A. Hidalgo, and J. Albors, 2014: What drives the development of renewable energy technologies? Toward a typology for the systemic drivers. ''Renew. Sustain. Energy Rev.'' , '''38''' , 834–847, doi:10.1016/j.rser.2014.07.023. <div id="David--1995"></div> David, P. and D. Foray, 1995: ''Accessing and expanding the science and technology knowledge base'' . OECD, Paris, France, 13–68 pp. [https://www.oecd-ilibrary.org/science-and-technology/sti-science-technology-and-industry-review/volume-1995/issue-1_sti_rev-v1995-1-en;jsessionid=obHXe2la2KMFoBepY-2tE7nHYcn3oKTSwCyrNYqX.ip-10-240-5-18 https://www.oecd-ilibrary.org/docserver/sti_rev-v1995-1-en.pdf?] expires=1636825312&id=id&accname=guest&checksum=8EF2C3D 4C4CFDA3532CC73D10337415E . <div id="David--1985"></div> David, P.A., 1985: Clio and the Economics of QWERTY. ''Am. Econ. Rev.'' , '''75(2)''' , 332–337, doi:http://dx.doi.org/10.2307/1805621. <div id="Davis--2014"></div> Davis, L.W., 2014: The Economic Cost of Global Fuel Subsidies. ''Am. Econ. Rev.'' , '''104(5)''' , 581–585, doi:10.1257/aer.104.5.581. <div id="Davis--2019"></div> Davis, L.W. and C.R. Knittel, 2019: Are Fuel Economy Standards Regressive? ''J. Assoc. Environ. Resour. Econ.'' , '''6''' (S1), S37–S63, doi:10.1086/701187. <div id="de Beer--2016"></div> de Beer, J., K. Fu, and S. Wunsch-Vincent, 2016: Innovation in the informal economy. In: ''The informal economy in developing nations: Hidden engine of innovation?'' [Wunsch-Vincent, S. and E. Kraemer-Mbula, (eds.)], Cambridge University Press, Cambridge, UK, 439 pp. <div id="de Coninck--2015"></div> de Coninck, H. and D. Puig, 2015: Assessing climate change mitigation technology interventions by international institutions. ''Clim. Change'' , '''131(3)''' , 417–433, doi:10.1007/s10584-015-1344-z. <div id="de Coninck--2017"></div> de Coninck, H. and A. Sagar, 2017: Technology Development and Transfer (Article 10). In: ''The Paris Agreement on Climate Change: Analysis and Commentary'' [Klein, D., M. Pía Carazo, M. Doelle, J. Bulmer, and A. Higham, (eds.)], Oxford University Press, Oxford, UK, pp. 258–276. <div id="de Gooyert--2016"></div> de Gooyert, V., E. Rouwette, H. van Kranenburg, E. Freeman, and H. van Breen, 2016: Sustainability transition dynamics: Towards overcoming policy resistance. ''Technol. Forecast. Soc. Change'' , '''111''' , 135–145, doi:10.1016/J.TECHFORE.2016.06.019. <div id="de Jesus--2018"></div> de Jesus, A. and S. Mendonça, 2018: Lost in Transition? Drivers and Barriers in the Eco-innovation Road to the Circular Economy. ''Ecol. Econ.'' , '''145''' , 75–89, doi:10.1016/J.ECOLECON.2017.08.001. <div id="de Jong--2014"></div> de Jong, P., A. Paulraj, and C. Blome, 2014: The Financial Impact of ISO 14001 Certification: Top-Line, Bottom-Line, or Both? ''J. Bus. Ethics'' , '''119(1)''' , 131–149, doi:10.1007/s10551-012-1604-z. <div id="de la Tour--2011"></div> de la Tour, A., M. Glachant, and Y. Ménière, 2011: Innovation and international technology transfer: The case of the Chinese photovoltaic industry. ''Energy Policy'' , '''39(2)''' , 761–770, doi:10.1016/J.ENPOL.2010.10.050. <div id="de Rassenfosse--2013"></div> de Rassenfosse, G., H. Dernis, D. Guellec, L. Picci, and B. van Pottelsberghe de la Potterie, 2013: The worldwide count of priority patents: A new indicator of inventive activity. ''Res. Policy'' , '''42(3)''' , 720–737, doi:10.1016/j.respol.2012.11.002. <div id="De Rose--2017"></div> De Rose, A. et al., 2017: ''Technology Readiness Level: Guidance Principles for Renewable Energy Technologies'' . European Commission, Brussels, 48 pp. <div id="de Sisternes--2016"></div> de Sisternes, F.J., J.D. Jenkins, and A. Botterud, 2016: The value of energy storage in decarbonizing the electricity sector. ''Appl. Energy'' , '''175''' , 368–379, doi:https://doi.org/10.1016/j.apenergy.2016.05.014. <div id="Dechezleprêtre--2011"></div> Dechezleprêtre, A., M. Glachant, I. Haščič, N. Johnstone, and Y. Ménière, 2011: Invention and Transfer of Climate Change–Mitigation Technologies: A Global Analysis. ''Rev. Environ. Econ. Policy'' , '''5(1)''' , 109–130, doi:10.1093/reep/req023. <div id="Dechezleprêtre--2013"></div> Dechezleprêtre, A., M. Glachant, and Y. Ménière, 2013: What Drives the International Transfer of Climate Change Mitigation Technologies? Empirical Evidence from Patent Data. ''Environ. Resour. Econ.'' , '''54(2)''' , 161–178, doi:10.1007/s10640-012-9592-0. <div id="Deichmann--2016"></div> Deichmann, U., A. Goyal, and D. Mishra, 2016: ''Will Digital Technologies Transform Agriculture in Developing Countries?'' World Bank, Washington, DC, USA, 30 pp. <div id="del Río--2010"></div> del Río, P., 2010: Analysing the interactions between renewable energy promotion and energy efficiency support schemes: The impact of different instruments and design elements. ''Energy Policy'' , '''38(9)''' , 4978–4989, doi:10.1016/j.enpol.2010.04.003. <div id="del Río--2014"></div> del Río, P., 2014: On evaluating success in complex policy mixes: The case of renewable energy support schemes. ''Policy Sci.'' , '''47(3)''' , 267–287, doi:10.1007/s11077-013-9189-7. <div id="del Río--2014"></div> del Río, P. and E. Cerdá, 2014: The policy implications of the different interpretations of the cost-effectiveness of renewable electricity support. ''Energy Policy'' , '''64''' , 364–372, doi:10.1016/j.enpol.2013.08.096. <div id="del Río--2017"></div> del Río, P. and E. Cerdá, 2017: The missing link: The influence of instruments and design features on the interactions between climate and renewable electricity policies. ''Energy Res. Soc. Sci.'' , '''33''' , 49–58, doi:10.1016/j.erss.2017.09.010. <div id="del Río--2021"></div> del Río, P. and C. Kiefer, 2021: ''Analysing the effects of auctions on technological innovation: Report D4.3 of AURES II project'' . Aures II. Published Online. 99 pp. http://aures2project.eu/wp-content/uploads/2021/04/AURES_II_D4_3_technological_innovation.pdf (Accessed July 22, 2021). <div id="del Río--2012"></div> del Río, P., 2012: The dynamic efficiency of feed-in tariffs: The impact of different design elements. ''Energy Policy'' , '''41''' , 139–151, doi:10.1016/J.ENPOL.2011.08.029. <div id="Denevan--1995"></div> Denevan, W.M., 1995: 2 Prehistoric agricultural methods as models for sustainability. ''Advances in Plant Pathology.'' '''11''' , pp. 21–43. [https://doi.org/10.1016/S0736-4539(06)80004-8 https://doi.org/10.1016/S0736- 4539(06)80004-8] . <div id="Deng--2018"></div> Deng, H.M., Q.M. Liang, L.J. Liu, and L.D. Anadon, 2018: Co-benefits of greenhouse gas mitigation: A review and classification by type, mitigation sector, and geography. ''Environ. Res. Lett.'' , '''12(12)''' , 123001, doi:10.1088/1748-9326/aa98d2. <div id="Deutch--2013"></div> Deutch, J. and E. Steinfeld, 2013: ''A Duel in the Sun: The Solar Photovoltaics Technology Conflict between China and the United States'' . Energy Initiative Massachusetts Institute of Technology. Cambridge, US, 32 pp. http://mitei.mit.edu/futureofsolar (Accessed August 30, 2021). <div id="Devine--2015"></div> Devine, A. and N. Kok, 2015: Green Certification and Building Performance: Implications for Tangibles and Intangibles. ''J. Portf. Manag.'' , '''41(6)''' , 151–163, doi:10.3905/jpm.2015.41.6.151. <div id="Devlin--2010"></div> Devlin, A., 2010: The Misunderstood Function of Disclosure in Patent Law. ''Harvard Journa Technol'' ''. Law'' , '''23''' , 401. <div id="Di Maria--2005"></div> Di Maria, C. and S.A. Smulders, 2005: Trade Pessimists vs Technology Optimists: Induced Technical Change and Pollution Havens. ''Adv. Econ. Anal. Policy'' , '''3(2)''' , doi:10.2202/1538-0637.1344. <div id="Di Maria--2008"></div> Di Maria, C. and E. van der Werf, 2008: Carbon leakage revisited: Unilateral climate policy with directed technical change. ''Environ. Resour. Econ.'' , '''39(2)''' , 55–74, doi:10.1007/s10640-007-9091-x. <div id="Díaz--2019"></div> Díaz, S. et al., 2019: Pervasive human-driven decline of life on Earth points to the need for transformative change. ''Science'' , '''366(6471)''' ,1-10, doi:10.1126/science.aax3100. <div id="Diercks--2019"></div> Diercks, G., H. Larsen, and F. Steward, 2019: Transformative innovation policy: Addressing variety in an emerging policy paradigm. ''Res. Policy'' , '''48(4)''' , 880–894, doi:10.1016/j.respol.2018.10.028. <div id="Disterheft--2015"></div> Disterheft, A., S. Caeiro, U.M. Azeiteiro, and W.L. Filho, 2015: Sustainable universities – a study of critical success factors for participatory approaches. ''J. Clean. Prod.'' , '''106''' , 11–21, doi:10.1016/j.jclepro.2014.01.030. <div id="Doblinger--2019"></div> Doblinger, C., K. Surana, and L.D. Anadon, 2019: Governments as partners: The role of alliances in U.S. cleantech startup innovation. ''Res. Policy'' , '''48(6)''' , 1458–1475, doi:10.1016/j.respol.2019.02.006. <div id="Doranova--2010"></div> Doranova, A., I. Costa, and G. Duysters, 2010: Knowledge base determinants of technology sourcing in clean development mechanism projects. ''Energy Policy'' , '''38(10)''' , 5550–5559, doi:10.1016/j.enpol.2010.04.055. <div id="Dorband--2020"></div> Dorband, I.I., M. Jakob, and J.C. Steckel, 2020: Unraveling the political economy of coal: Insights from Vietnam. ''Energy Policy'' , '''147''' , 111860, doi:10.1016/j.enpol.2020.111860. <div id="Doukas--2020"></div> Doukas, H. and A. Nikas, 2020: Decision support models in climate policy. ''Eur. J. Oper. Res.'' , '''280(1)''' , 1–24, doi:10.1016/j.ejor.2019.01.017. <div id="Doukas--2018"></div> Doukas, H., A. Nikas, M. González-Eguino, I. Arto, and A. Anger-Kraavi, 2018: From Integrated to Integrative: Delivering on the Paris Agreement. ''Sustainability'' , '''10(7)''' , 2299, doi:10.3390/su10072299. <div id="Douthwaite--2017"></div> Douthwaite, B. and E. Hoffecker, 2017: Towards a complexity-aware theory of change for participatory research programs working within agricultural innovation systems. ''Agric. Syst.'' , '''155''' , 88–102, doi:https://doi.org/10.1016/j.agsy.2017.04.002. <div id="Du--2019"></div> Du, K. and J. Li, 2019: Towards a green world: How do green technology innovations affect total-factor carbon productivity. ''Energy Policy'' , '''131''' , 240–250, doi:10.1016/j.enpol.2019.04.033. <div id="Du--2019"></div> Du, K., P. Li, and Z. Yan, 2019: Do green technology innovations contribute to carbon dioxide emission reduction? Empirical evidence from patent data. ''Technol. Forecast. Soc. Change'' , '''146''' , 297–303, doi:10.1016/j.techfore.2019.06.010. <div id="Dussaux--2018"></div> Dussaux, D., A. Dechezleprêtre, and M. Glachant, 2018: ''Intellectual property rights protection and the international transfer of low-carbon technologies'' . Centre for Climate Change Economics and Policy Working Paper No. 323, Grantham Research Insitute on Climate Change and the Environment Working Paper No.288, Published Online, 63 pp. [https://personal.lse.ac.uk/dechezle/Working-Paper-288-Dussaux-et-al.pdf.ISSN%202515-5709 https://personal.lse.ac.uk/dechezle/Working-Paper-288-Dussaux-et-al.pdf. ISSN 2515-5709] . <div id="Dziallas--2019"></div> Dziallas, M. and K. Blind, 2019: Innovation indicators throughout the innovation process: An extensive literature analysis. ''Technovation'' , '''80''' – '''81''' , 3–29, doi:10.1016/j.technovation.2018.05.005. <div id="Ebeling--2020"></div> Ebeling, F., 2020: Assessing the macroeconomic effects of sustainable energy transitions in Costa Rica and Chile: A multisectoral balance-of-payments-constrained growth approach. In: ''The Regulation and Policy of Latin American Energy Transitions'' [Guimaraes, L.N., (ed.)], Elsevier Science, Amsterdam, Netherlands, pp. 39–58. <div id="Echeverría--1998"></div> Echeverría, R.G., 1998: Agricultural research policy issues in Latin America: An overview. ''World Dev.'' , '''26(6)''' , 1103–1111, doi:10.1016/S0305-750X '''(98)''' 00036-9. <div id="Economidou--2020"></div> Economidou, M. et al., 2020: Review of 50 years of EU energy efficiency policies for buildings. ''Energy Build.'' , '''225''' , 110322, doi:https://doi.org/10. 1016/j.enbuild.2020.110322. <div id="Edler--2007"></div> Edler, J. and L. Georghiou, 2007: Public procurement and innovation – Resurrecting the demand side. ''Res. Policy'' , '''36(7)''' , 949–963, doi:10.1016/j.respol.2007.03.003. <div id="Edmondson--2019"></div> Edmondson, D.L., F. Kern, and K.S. Rogge, 2019: The co-evolution of policy mixes and socio-technical systems: Towards a conceptual framework of policy mix feedback in sustainability transitions. ''Res. Policy'' , '''48(10)''' , 103555, doi:10.1016/j.respol.2018.03.010. <div id="Edmondson--2020"></div> Edmondson, D.L., K.S. Rogge, and F. Kern, 2020: Zero carbon homes in the UK? Analysing the co-evolution of policy mix and socio-technical system. ''Environ. Innov. Soc. Transitions'' , '''35''' , 135–161, doi:10.1016/j.eist.2020.02.005. <div id="Edquist--1997"></div> Edquist, C., 1997: ''Systems of Innovation: Technologies, Institutions and Organizations'' . [Edquist, C., (ed.)]. Pinter Publishers/Cassell Academic, London, UK, 432 pp. <div id="Egli--2018"></div> Egli, F., B. Steffen, and T.S. Schmidt, 2018: A dynamic analysis of financing conditions for renewable energy technologies. ''Nat. Energy'' , '''3(12)''' , 1084–1092, doi:10.1038/s41560-018-0277-y. <div id="Einstein--1905"></div> Einstein, A., 1905: Über einen die Erzeugung und Verwandlung des Lichtes betreffenden heuristischen Gesichtspunkt. ''Ann. Phys.'' , '''322(6)''' , 132–148, doi:10.1002/andp.19053220607. <div id="Eisenberg--2019"></div> Eisenberg, A.M., 2019: Just transitions. ''South. Calif. Law Rev.'' , '''92(2)''' , 273–330. <div id="Elder--2016"></div> Elder, M., M. Bengtsson, and L. Akenji, 2016: An Optimistic Analysis of the Means of Implementation for Sustainable Development Goals: Thinking about Goals as Means. ''Sustainability'' , '''8(9)''' , 962, doi:10.3390/su8090962. <div id="Elia--2021"></div> Elia, A., M. Kamidelivand, F. Rogan, and B. Ó Gallachóir, 2021: Impacts of innovation on renewable energy technology cost reductions. ''Renew. Sustain. Energy Rev.'' , '''138''' , 110488, doi:10.1016/j.rser.2020.110488. <div id="Elshurafa--2018"></div> Elshurafa, A.M., S.R. Albardi, S. Bigerna, and C.A. Bollino, 2018: Estimating the learning curve of solar PV balance-of-system for over 20 countries: Implications and policy recommendations. ''J. Clean. Prod.'' , '''196''' , 122–134, doi:10.1016/J.JCLEPRO.2018.06.016. <div id="Elzen--2004"></div> Elzen, B., F. Geels, and K. Green, 2004: ''System Innovation and the Transition to Sustainability: Theory, evidence and policy'' . 1st ed. [Elzen, B., F. Geels, and K. Green, (eds.)]. Edward Elgar Publishing, London, UK and New York, NY, USA, 336 pp. <div id="Emmerling--2016"></div> Emmerling, J. et al., 2016: ''The WITCH 2016 Model – Documentation and Implementation of the Shared Socioeconomic Pathways'' . [https://papers.ssrn.com/sol3/papers.cfm?abstract_id=2800970 ''FEEM Working Paper No. 42.2016''] . Fondazione Eni Enrico Mattei, Milan, Italy, 63 pp. <div id="Encaoua--2006"></div> Encaoua, D., D. Guellec, and C. Martínez, 2006: Patent systems for encouraging innovation: Lessons from economic analysis. ''Res. Policy'' , '''35(9)''' , 1423–1440, doi:10.1016/j.respol.2006.07.004. <div id="EPO--2017"></div> [[#EPO--2017|EPO, 2017]] : ''Unitary Patent Guide'' . European Patent Office, Munich, [https://www.epo.org/applying/european/guide-up/html/e/index.html https://www.epo.org/applying/european/guide-up/ht ml/e/index.html] <div id="Erickson--2015"></div> Erickson, P., S. Kartha, M. Lazarus, and K. Tempest, 2015: Assessing carbon lock-in. ''Environ. Res. Lett.'' , '''10(8)''' , 084023, doi:10.1088/1748-9326/10/8/084023. <div id="European Association of Research Technology Organisations--2014"></div> [[#European%20Association%20of%20Research%20Technology%20Organisations--2014|European Association of Research Technology Organisations, 2014]] : ''The TRL Scale as a Research & Innovation Policy Tool'' . EARTO, Published Online, 17pp. [http://www.earto.eu/fileadmin/content/03_Publications/%20The_TRL_Scale_as_a_R_I_Policy_Tool_-_EARTO_Recommendations_-_%20Final.pdf http://www.earto.eu/fileadmin/content/03_Publications/] The_TRL_Scale_as_a_R_I_Policy_Tool_-_EARTO_Recommendation s_-_ Final.pdf . <div id="European Commission--2015"></div> [[#European%20Commission--2015|European Commission, 2015]] : ''EU R&D Survey: The 2015 EU Survey on Industrial R&D Investment Trends'' . European Commission Joint Research Centre, Seville, Spain, 54 pp. <div id="European Commission--2018"></div> [[#European%20Commission--2018|European Commission, 2018]] : ''Ecodesign Impacts Accounting, Status October 2018'' . European Union, Published Online, 382pp https://ec.europa.eu/energy/sites/ener/files/documents/eia_status_report_2017_-_v20171222.pdf . <div id="European Commission--2020"></div> [[#European%20Commission--2020|European Commission, 2020]] : ''An SME Strategy for a sustainable and digital Europe'' . COM/2020/103. European Union, Brussels, 19pp. <div id="Evenson--2003"></div> Evenson, R.E. and D. Gollin, 2003: Assessing the Impact of the Green Revolution, 1960 to 2000. ''Science'' , '''300(5620)''' , 758–762, doi:10.1126/science.1078710. <div id="Fagerberg--2018"></div> Fagerberg, J., 2018: Mobilizing innovation for sustainability transitions: A comment on transformative innovation policy. ''Res. Policy'' , '''47(9)''' , 1568–1576, doi:10.1016/j.respol.2018.08.012. <div id="Falvey--2006"></div> Falvey, R., N. Foster, and D. Greenaway, 2006: Intellectual Property Rights and Economic Growth. ''Rev. Dev. Econ.'' , '''10(4)''' , 700–719, doi:10.1111/j.1467-9361.2006.00343.x. <div id="Fankhauser--2018"></div> Fankhauser, S. and F. Jotzo, 2018: Economic growth and development with low‐carbon energy. ''WIREs Clim. Chang.'' , '''9(1)''' , e495, doi:10.1002/wcc.495. <div id="FAO--2018a"></div> [[#FAO--2018a|FAO, 2018a]] : ''Transforming Food and Agriculture to Achieve the SDGs: 20 interconnected actions to guide decision-makers'' . FAO, Rome, Italy, 132 pp. <div id="FAO--2018b"></div> [[#FAO--2018b|FAO, 2018b]] : ''Los 10 Elementos De La Agroecología Guía para la Transición Hacia Sistemas Alimentarios y Agrícolas Sostenibles'' . FAO, Rome, Italy, 15 pp. <div id="FAO--2019"></div> [[#FAO--2019|FAO, 2019]] : ''FAO activities in SIDS'' . FAO, Published Online, 16 pp. http://www.fao.org/sids/activities-in-sids/en/ . <div id="Farmer--2019"></div> Farmer, J.D. et al., 2019: Sensitive intervention points in the post-carbon transition. ''Science'' , '''364(6436)''' , 132–134, doi:10.1126/science.aaw7287. <div id="Fazey--2020"></div> Fazey, I. et al., 2020: Transforming knowledge systems for life on Earth: Visions of future systems and how to get there. ''Energy Res. Soc. Sci.'' , '''70''' , 101724, doi:https://doi.org/10.1016/j.erss.2020.101724. <div id="Fernández-Sastre--2019"></div> Fernández-Sastre, J. and F. Montalvo-Quizhpi, 2019: The effect of developing countries’ innovation policies on firms’ decisions to invest in R&D. ''Technol. Forecast. Soc. Change'' , '''143''' (February), 214–223, doi:10.1016/j.techfore.2019.02.006. <div id="Fischer--2017"></div> Fischer, C., L. Preonas, and R.G. Newell, 2017: Environmental and Technology Policy Options in the Electricity Sector: Are We Deploying Too Many? ''J. Assoc. Environ. Resour. Econ.'' , '''4(4)''' , 959–984, doi:10.1086/692507. <div id="Fisher--2006"></div> Fisher, E., R.L. Mahajan, and C. Mitcham, 2006: Midstream Modulation of Technology: Governance From Within. ''Bull. Sci. Technol. Soc.'' , '''26(6)''' , 485–496, doi:10.1177/0270467606295402. <div id="Fleming--2001"></div> Fleming, L. and O. Sorenson, 2001: Technology as a complex adaptive system: Evidence from patent data. ''Res. Policy'' , '''30(7)''' , 1019–1039, doi:10.1016/S0048-7333 '''(00)''' 00135-9. <div id="Foray--2004"></div> Foray, D., 2004: The patent system and the dynamics of innovation in Europe. ''Sci. Public Policy'' , '''31(6)''' , 449–456, doi:10.3152/147154304781779732. <div id="Foster--2020"></div> Foster, C. and S. Azmeh, 2020: Latecomer Economies and National Digital Policy: An Industrial Policy Perspective. ''J. Dev. Stud.'' , '''56(7)''' , 1247–1262, doi:10.1080/00220388.2019.1677886. <div id="Fragkiadakis--2020"></div> Fragkiadakis, K., P. Fragkos, and L. Paroussos, 2020: Low-Carbon R&D Can Boost EU Growth and Competitiveness. ''Energies'' , '''13(19)''' , 5236, doi:10.3390/en13195236. <div id="Francis--2003"></div> Francis, C. et al., 2003: Agroecology: The Ecology of Food Systems. ''J. Sustain. Agric.'' , '''22(3)''' , 99–118, doi:10.1300/J064v22n03_10. <div id="Frank--1996"></div> Frank, C., C. Sink, L. Mynatt, R. Rogers, and A. Rappazzo, 1996: Surviving the “valley of death”: A comparative analysis. ''J. Technol. Transf.'' , '''21(''' '''1–2''' ''')''' , 61–69, doi:10.1007/BF02220308. <div id="Frankfurt School-UNEP Centre/BNEF--2019"></div> [[#Frankfurt%20School-UNEP%20Centre/BNEF--2019|Frankfurt School-UNEP Centre/BNEF, 2019]] : ''Global Trends in Renewable Energy Investment 2020'' . Frankfurt School-UNEP Centre/BNEF, Frankfurt, Germany, 76 pp. [https://wedocs.unep.org/bitstream/handle/20.500.11822/29752/GTR2019.pdf https://wedocs.unep.org/bitstream/handle/20. 500.11822/297 52/GTR2019.pdf] . <div id="Freeman--1995"></div> Freeman, C., 1995: The ‘National System of Innovation’ in historical perspective. ''Cambridge J. Econ.'' , '''19(1)''' , 5–14, doi:10.1093/oxfordjournals.cje.a035309. <div id="Freeman--1997"></div> Freeman, C. and L. Soete, 1997: ''The Economics of Industrial Innovation'' . 3rd ed. [Freeman, C. and L. Soete, (eds.)]. Routledge, Taylor & Francis Group, London, UK, 480 pp. <div id="Freeman--2009"></div> Freeman, C. and L. Soete, 2009: Developing science, technology and innovation indicators: What we can learn from the past. ''Res. Policy'' , '''38(4)''' , 583–589, doi:10.1016/j.respol.2009.01.018. <div id="Frenken--2012"></div> Frenken, K., L.R. Izquierdo, and P. Zeppini, 2012: Branching innovation, recombinant innovation, and endogenous technological transitions. ''Environ. Innov. Soc. Transitions'' , '''4''' , 25–35, doi:10.1016/j.eist.2012.06.001. <div id="Fridgen--2020"></div> Fridgen, G., R. Keller, M.-F. Körner, and M. Schöpf, 2020: A holistic view on sector coupling. ''Energy Policy'' , '''147''' , 111913, doi:https://doi.org/10.1016/j.enpol.2020.111913. <div id="Friedman--2019"></div> Friedman, B. and D.G. Hendry, 2019: ''Value Sensitive Design'' . The MIT Press, Cambridge, MA, USA, 17–23 pp. <div id="Fu--2019"></div> Fu, B., S. Wang, J. Zhang, Z. Hou, and J. Li, 2019: Unravelling the complexity in achieving the 17 sustainable-development goals. ''Natl. Sci. Rev.'' , '''6(3)''' , 386–388, doi:10.1093/nsr/nwz038. <div id="Fu--2018"></div> Fu, W., C. Li, J. Ondrich, and D. Popp, 2018: ''Technological Spillover Effects of State Renewable Energy Policy: Evidence from Patent Counts'' . National Bureau of Economic Research, Cambridge, MA, USA, 41 pp. <div id="Fuerst--2011"></div> Fuerst, F. and P. McAllister, 2011: Eco-labeling in commercial office markets: Do LEED and Energy Star offices obtain multiple premiums? ''Ecol. Econ.'' , '''70(6)''' , 1220–1230, doi:10.1016/j.ecolecon.2011.01.026. <div id="Fuglie--2018"></div> Fuglie, K., 2018: R&D Capital, R&D spillovers, and productivity growth in world agriculture. ''Appl. Econ. Perspect. Policy'' , '''40(3)''' , 421–444, doi:10.1093/AEPP/PPX045. <div id="Funtowicz--2020"></div> Funtowicz, S., 2020: From risk calculations to narratives of danger. ''Clim. Risk Manag.'' , '''27''' , 100212, doi:10.1016/j.crm.2020.100212. <div id="Gaddy--2017"></div> Gaddy, B.E., V. Sivaram, T.B. Jones, and L. Wayman, 2017: Venture capital and cleantech: The wrong model for energy innovation. ''Energy Policy'' , '''102''' (July), 385–395, doi:10.1016/j.enpol.2016.12.035. <div id="Gallagher--2006"></div> Gallagher, K.S., J.P. Holdren, and A.D. Sagar, 2006: Energy-technology innovation. ''Annu. Rev. Environ. Resour.'' , '''31(1)''' , 193–237, doi:10.1146/annurev.energy.30.050504.144321. <div id="Gallagher--2011"></div> Gallagher, K.S., L.D. Anadon, R. Kempener, and C. Wilson, 2011: Trends in investments in global energy research, development, and demonstration. ''Wiley Interdiscip. Rev. Clim. Chang.'' , '''2(3)''' , 373–396, doi:10.1002/wcc.112. <div id="Gallagher--2012"></div> Gallagher, K.S., A. Grübler, L. Kuhl, G. Nemet, and C. [[#Wilson--2012|Wilson, 2012]] : The energy technology innovation system. ''Annu. Rev. Environ. Resour.'' , '''37(1)''' , 137–162, doi:10.1146/annurev-environ-060311-133915. <div id="Galloway McLean--2010"></div> Galloway McLean, K., 2010: ''Advance Guard: Climate Change Impacts, Adaptation, Mitigation and Indigenous Peoples – A Compendium of Case Studies'' . United Nations University, Traditional Knowledge Initiative, Darwin, Australia, 128 pp. http://www.unutki.org/ (Accessed July 22, 2021). <div id="Gambhir--2016"></div> Gambhir, A., P. Sandwell, and J. Nelson, 2016: The future costs of OPV – A bottom-up model of material and manufacturing costs with uncertainty analysis. ''Sol. Energy Mater. Sol. Cells'' , '''156''' , 49–58, doi:10.1016/j.solmat.2016.05.056. <div id="Gambhir--2019"></div> Gambhir, A., I. Butnar, P.-H. Li, P. Smith, and N. Strachan, 2019: A Review of Criticisms of Integrated Assessment Models and Proposed Approaches to Address These, through the Lens of BECCS. ''Energies'' , '''12(9)''' , 1747, doi:10.3390/en12091747. <div id="Gandenberger--2016"></div> Gandenberger, C., M. Bodenheimer, J. Schleich, R. Orzanna, and L. Macht, 2016: Factors driving international technology transfer: Empirical insights from a CDM project survey. ''Clim. Policy'' , '''16(8)''' , 1065–1084, doi:10.1080/14693062.2015.1069176. <div id="Gann--1998"></div> Gann, D.M., Y. Wang, and R. Hawkins, 1998: Do regulations encourage innovation? The case of energy efficiency in housing. ''Build. Res. Inf.'' , '''26(5)''' , 280–296, doi:10.1080/096132198369760. <div id="Gao--2017"></div> Gao, L. and B.A. Bryan, 2017: Finding pathways to national-scale land-sector sustainability. ''Nature'' , '''544(7649)''' , 217–222, doi:10.1038/nature21694. <div id="Gao--2013"></div> Gao, X. and W. Zhang, 2013: Foreign investment, innovation capacity and environmental efficiency in China. ''Math. Comput. Model.'' , '''58(''' '''5–6''' ''')''' , 1040–1046, doi:10.1016/j.mcm.2012.08.012. <div id="Gao--2019"></div> Gao, X. and V. Rai, 2019: Local demand-pull policy and energy innovation: Evidence from the solar photovoltaic market in China. ''Energy Policy'' , '''128''' (February 2018), 364–376, doi:10.1016/j.enpol.2018.12.056. <div id="Garcia-Casals--2019"></div> Garcia-Casals, X., R. Ferroukhi, and B. Parajuli, 2019: Measuring the socio-economic footprint of the energy transition. ''Energy Transitions'' , '''3(''' '''1–2''' ''')''' , 105–118, doi:10.1007/s41825-019-00018-6. <div id="Geddes--2018"></div> Geddes, A., T.S. Schmidt, and B. Steffen, 2018: The multiple roles of state investment banks in low-carbon energy finance: An analysis of Australia, the UK and Germany. ''Energy Policy'' , '''115''' , 158–170, doi:10.1016/j.enpol.2018.01.009. <div id="Geels--2010"></div> Geels, F.W. and J. Schot, 2010: ''The Dynamics of Transitions: A Socio-Technical'' Perspective. In: Transitions to Sustainable Development: New Directions in the Study of Long Term Transformative Change [Grin, J. Rotmans, J. and Schot, J. (eds.)]Routledge, New York US and Oxon UK, pp. 11–104. <div id="Geels--2002"></div> Geels, F.W., 2002: Technological transitions as evolutionary reconfiguration processes: A multi-level perspective and a case-study. ''Res. Policy'' , '''31(''' '''8–9''' ''')''' , 1257–1274, doi:10.1016/S0048-7333 '''(02)''' 00062-8. <div id="Geels--2004"></div> Geels, F.W., 2004: From sectoral systems of innovation to socio-technical systems. ''Res. Policy'' , '''33(''' '''6–7''' ''')''' , 897–920, doi:10.1016/j.respol.2004.01.015. <div id="Geels--2005"></div> Geels, F.W., 2005: ''Technological transition and system innovations: A'' ''co-evolutionary'' ''and socio-technical analysis'' . Edward Elgar Publishing, Cheltenham, UK, 328 pp. <div id="Geels--2012"></div> Geels, F.W., 2012: A socio-technical analysis of low-carbon transitions: Introducing the multi-level perspective into transport studies. ''J. Transp. Geogr.'' , '''24''' , 471–482, doi:10.1016/j.jtrangeo.2012.01.021. <div id="Geels--2014"></div> Geels, F.W., 2014: Regime Resistance against Low-Carbon Transitions: Introducing Politics and Power into the Multi-Level Perspective. ''Theory, Cult. Soc.'' , '''31(5)''' , 21–40, doi:10.1177/0263276414531627. <div id="Geels--2019"></div> Geels, F.W., 2019: Socio-technical transitions to sustainability: A review of criticisms and elaborations of the Multi-Level Perspective. ''Curr. Opin. Environ. Sustain.'' , '''39''' , 187–201, doi:10.1016/J.COSUST.2019.06.009. <div id="Geels--2016"></div> Geels, F.W., F. Berkhout, and D.P. van Vuuren, 2016: Bridging analytical approaches for low-carbon transitions. ''Nat. Clim. Chang.'' , '''6(6)''' , 576–583, doi:10.1038/nclimate2980. <div id="Geels--2017"></div> Geels, F.W., B.K. Sovacool, T. Schwanen, and S. Sorrell, 2017: The Socio-Technical Dynamics of Low-Carbon Transitions. ''Joule'' , '''1(3)''' , 463–479, doi:10.1016/j.joule.2017.09.018. <div id="Genest--2014"></div> Genest, A., 2014: The Canada-FIT case and the WTO subsidies agreement: Failed fact-finding, needless complexity, and missed judicial economy. ''McGill J. Sustain. Dev. Law Policy'' , '''10(2)''' , 239–257. <div id="Gerlagh--2014"></div> Gerlagh, R. and O. Kuik, 2014: Spill or leak? Carbon leakage with international technology spillovers: A CGE analysis. ''Energy Econ.'' , '''45''' , 381–388, doi:10.1016/j.eneco.2014.07.017. <div id="Gertner--2013"></div> Gertner, J., 2013: ''The Idea Factory: Bell Labs and the great age of American innovation'' . Penguin Books, London, UK, 422 pp. <div id="GeSI--2012"></div> [[#GeSI--2012|GeSI, 2012]] : ''GeSI SMARTer 2020: The Role of ICT in Driving a Sustainable Future'' . GeSI, Published Online. [https://gesi.org/research/gesi-smarter2020-the-role-of-ict-in-driving-a-sustainable-future https://gesi.org/research/gesi-smarter2020-the-role-of-ict-in-driving-a-susta inable-future] . <div id="Gibbons--1999"></div> Gibbons, M., 1999: Science’s new social contract with society. ''Nature'' , '''402(6761)''' , C81–C84, doi:10.1038/35011576. <div id="Gillingham--2016"></div> Gillingham, K. et al., 2016: Deconstructing solar photovoltaic pricing: The role of market structure, technology, and policy. ''Energy J.'' , '''37(3)''' ,pp 231–250, doi:10.5547/01956574.37.3.kgil. <div id="Gillingham--2012"></div> Gillingham, K.T. and J. Sweeney, 2012: Barries to implementing low-carbon technologies. ''Clim. Chang. Econ.'' , '''03(04)''' , 1250019, doi:10.1142/S2010007812500194. <div id="Girod--2017"></div> Girod, B., T. Stucki, and M. Woerter, 2017: How do policies for efficient energy use in the household sector induce energy-efficiency innovation? An evaluation of European countries. ''Energy Policy'' , '''103''' , 223–237, doi:10.1016/j.enpol.2016.12.054. <div id="Glachant--2017"></div> Glachant, M. and A. Dechezleprêtre, 2017: What role for climate negotiations on technology transfer? ''Clim. Policy'' , '''17(8)''' , 962–981, doi:10.1080/14693062.2016.1222257. <div id="Global Commission on Adaptation--2019"></div> [[#Global%20Commission%20on%20Adaptation--2019|Global Commission on Adaptation, 2019]] : ''Adapt Now. A global call for leadership on climate resilience'' . Global Commission on Adaptation, Rotterdam and Washington, 81 pp. [https://cdn.gca.org/assets/2019-09/GlobalCommission_Report_FINAL.pdf https://cdn.gca.org/assets/2019-09/GlobalCommission_Re port_FINAL.pdf] . <div id="Goldfarb--2011"></div> Goldfarb, B., 2011: Economic Transformations: General Purpose Technologies and Long-Term Economic Growth. By Richard G. Lipsey, Kenneth I. Carlaw, and Clifford T. Bekar. Oxford: Oxford University Press, UK,. ''J. Econ. Hist.'' , '''71(3)''' , 820–823, doi:10.1017/S0022050711002099. <div id="Goldstein--2020"></div> Goldstein, A., C. Doblinger, E. Baker, and L.D. Anadón, 2020: Patenting and business outcomes for cleantech startups funded by the Advanced Research Projects Agency-Energy. ''Nat. Energy'' , '''5(10)''' , 803–810, doi:10.1038/s41560-020-00683-8. <div id="Goldstein--2018"></div> Goldstein, A.P. and V. Narayanamurti, 2018: Simultaneous pursuit of discovery and invention in the US Department of Energy. ''Res. Policy'' , '''47(8)''' , 1505–1512, doi:10.1016/j.respol.2018.05.005. <div id="Goldstein--2020"></div> Goldstein, A.P. and M. Kearney, 2020: Know when to fold ‘em: An empirical description of risk management in public research funding. ''Res. Policy'' , '''49(1)''' , 103873, doi:10.1016/j.respol.2019.103873. <div id="Golombek--2004"></div> Golombek, R. and M. Hoel, 2004: Unilateral Emission Reductions and Cross-Country Technology Spillovers. ''Adv. Econ. Anal. Policy'' , '''3(2)''' , 57–83, doi:10.2202/1538-0637.1318. <div id="Gonsalves--2019"></div> Gonsalves, M. and J.M. Rogerson, 2019: Business incubators and green technology: The Gauteng Climate Innovation Centre, South Africa. Urbani izziv, '''30''' , 212–224, doi:10.5379/urbani-izziv-en-2019-30-supplement-014. <div id="González--2019"></div> González, F.G. et al., 2019: Field-grown transgenic wheat expressing the sunflower gene HaHB4 significantly outyields the wild type. ''J. Exp. Bot.'' , '''70(5)''' , 1669–1681, doi:10.1093/jxb/erz037. <div id="Gossart--2015"></div> Gossart, C., 2015: ''ICT Innovations for Sustainability'' . [Hilty, L.M. and B. Aebischer, (eds.)]. Springer International Publishing, Cham, Switzerland, 435–448 pp. <div id="Goulder--1999"></div> Goulder, L.H. and S.H. Schneider, 1999: Induced technological change and the attractiveness of CO 2 abatement policies. ''Resour. Energy Econ.'' , '''21(''' '''3–4''' ''')''' , 211–253, doi:10.1016/S0928-7655 '''(99)''' 00004-4. <div id="Gram-Hanssen--2018"></div> Gram-Hanssen, K. and S. Georg, 2018: Energy performance gaps: Promises, people, practices. ''Build. Res. Inf.'' , '''46(1)''' , 1–9, doi:10.1080/09613218.2017.1356127. <div id="Grandia--2019"></div> Grandia, J. and D. Voncken, 2019: Sustainable Public Procurement: The Impact of Ability, Motivation, and Opportunity on the Implementation of Different Types of Sustainable Public Procurement. ''Sustainability'' , '''11(19)''' , 5215, doi:10.3390/su11195215. <div id="Grandstrand--2000"></div> Grandstrand, O., 2000: ''The Economics and Management of Intellectual Property: Towards Intellectual Capitalism'' . [Granstrand, O., (ed.)]. Edward Elgar Publishing, Cheltenham, UK, 480 pp. <div id="Grau--2015"></div> Grau, H.R. et al., 2015: Natural grasslands in the Chaco. A neglected ecosystem under threat by agriculture expansion and forest-oriented conservation policies. ''J. Arid Environ.'' , '''123''' , 40–46, doi:10.1016/j.jaridenv.2014.12.006. <div id="Greaker--2018"></div> Greaker, M., T. Heggedal, and K.E. Rosendahl, 2018: Environmental policy and the direction of technical change. ''Scand. J. Econ.'' , '''120(4)''' , 1100–1138, doi:10.1111/sjoe.12254. <div id="Green--2019"></div> Green, M.A., 2019: How Did Solar Cells Get So Cheap? ''Joule'' , '''3(3)''' , 631–633, doi:10.1016/j.joule.2019.02.010. <div id="Green Climate Fund--2020"></div> [[#Green%20Climate%20Fund--2020|Green Climate Fund, 2020]] : ''GCF Support to Climate Technologies: 16th Meeting of the Advisory Board of the CTCN'' . 19 pp. [https://www.ctc-n.org/sites/www.ctc-n.org/files/Agenda%204.3_Green%20Climate%20Fund.pdf https://www.ctc-n.org/sites/www.ctc-n.org/files/Agenda] 4.3_Green Climate Fund.pdf (Accessed August 25, 2021). <div id="Grimm--2013"></div> Grimm, R., C. Fox, S. Baines, and K. Albertson, 2013: Social innovation, an answer to contemporary societal challenges? Locating the concept in theory and practice. <div id="Griscom--2017"></div> Griscom, B.W. et al., 2017: Natural climate solutions. ''Proc. Natl. Acad. Sci.'' , '''114(44)''' , 11645–11650, doi:10.1073/pnas.1710465114. <div id="Gross--2018"></div> Gross, R., R. Hanna, A. Gambhir, P. Heptonstall, and J. Speirs, 2018: How long does innovation and commercialisation in the energy sectors take? Historical case studies of the timescale from invention to widespread commercialisation in energy supply and end use technology. ''Energy Policy'' , '''123''' , 682–699, doi:10.1016/j.enpol.2018.08.061. <div id="Grubb--2020"></div> Grubb, M. and C. Wieners, 2020: Modeling Myths: On the Need for Dynamic Realism in DICE and other Equilibrium Models of Global Climate Mitigation. ''Inst. New Econ. Think. Work. Pap. Ser.'' ,112, 1–29, doi:10.36687/inetwp112. <div id="Grubb--2021"></div> Grubb, M. et al., 2021: Induced innovation in energy technologies and systems: A review of evidence and potential implications for CO 2 mitigation. ''Environ. Res. Lett.'' , '''16(4)''' , 043007, doi:10.1088/1748-9326/abde07. <div id="Grubler--2013"></div> Grubler, A. and C. Wilson, 2013: ''Energy Technology Innovation: Learning from historical successes and failures'' . Cambridge University Press, Cambridge, UK, 1–387 pp. <div id="Grubler--2018"></div> Grubler, A. et al., 2018: A low energy demand scenario for meeting the 1.5°C target and sustainable development goals without negative emission technologies. ''Nat. Energy'' , '''3(6)''' , 515–527, doi:10.1038/s41560-018-0172-6. <div id="Grübler--1996"></div> Grübler, A., 1996: Time for a change: On the patterns of diffusion of innovation. ''Daedalus'' , '''125(3)''' , 19–42. <div id="Grübler--1998"></div> Grübler, A., 1998: ''Technology and Global Change'' . Cambridge University Press, Cambridge, UK, 452 pp. <div id="Grübler--1999a"></div> Grübler, A., N. Nakićenović, and D.G. Victor, 1999a: Modeling technological change: Implications for the global environment. ''Annu. Rev. Energy Environ.'' , '''24(1)''' , 545–569, doi:10.1146/annurev.energy.24.1.545. <div id="Grübler--1999b"></div> Grübler, A., N. Nakićenović, and D.G. Victor, 1999b: Dynamics of energy technologies and global change. ''Energy Policy'' , '''27(5)''' , 247–280, doi:10.1016/S0301-4215 '''(98)''' 00067-6. <div id="Gruebler--2012"></div> Gruebler, A. et al., 2012: Energy technology innovation systems. In: ''The Global Energy Assessment'' [Nakicenovic, N. et al., (ed.)], Cambridge University Press, Cambridge, UK, pp 11-29 doi:10.1017/CBO9781139150880.004. <div id="Gunderson--2002"></div> Gunderson, L.H. and C.S. Holling, 2002: ''Understanding Transformations in Human and Natural Systems'' . Island Press, Washington DC, USA, 509 pp. <div id="Gür--2018"></div> Gür, T.M., 2018: Review of electrical energy storage technologies, materials and systems: Challenges and prospects for large-scale grid storage. ''Energy Environ. Sci.'' , '''11(10)''' , 2696–2767, doi:10.1039/C8EE01419A. <div id="Haelg--2018"></div> Haelg, L., M. Waelchli, and T.S. Schmidt, 2018: Supporting energy technology deployment while avoiding unintended technological lock-in: A policy design perspective. ''Environ. Res. Lett.'' , '''13(10)''' , 104011, doi:10.1088/1748-9326/aae161. <div id="Haenssgen--2018"></div> Haenssgen, M.J. and P. Ariana, 2018: The place of technology in the capability approach. ''Oxford Dev. Stud.'' , '''46(1)''' , 98–112, doi:10.1080/13600818.2017.1325456. <div id="Hall--2010"></div> Hall, B. and C. Helmers, 2010: ''The role of patent protection in (clean/green) technology transfer'' . National Bureau of Economic Research,16323, 39 pp. [http://www.nber.org/papers/w16323.pdf http://www.nber.org/pap ers/w16323.pdf] . <div id="Hall--2001"></div> Hall, B.H. and R.H. Ziedonis, 2001: The Patent Paradox Revisited: An Empirical Study of Patenting in the U.S. Semiconductor Industry, 1979–1995. ''RAND J. Econ.'' '''32(1)''' ,101-128, doi:10.2307/2696400. <div id="Hall--2019"></div> Hall, B.H. and C. Helmers, 2019: The impact of international patent systems: Evidence from accession to the European Patent Convention. ''Res. Policy'' , '''48(9)''' , 103810, doi:10.1016/j.respol.2019.103810. <div id="Hall--2005"></div> Hall, J.K.K. and M.J.C. Martin, 2005: Disruptive technologies, stakeholders and the innovation value-added chain: A framework for evaluating radical technology development. ''R&D Manag.'' , '''35(3)''' , 273–284, doi:https://doi.org/10.1111/j.1467-9310.2005.00389.x. <div id="Hall--2015"></div> Hall, M.J. and A.N. Link, 2015: Technology-based state growth policies: The case of North Carolina’s Green Business Fund. ''Ann. Reg. Sci.'' , '''54(2)''' , 437–449, doi:10.1007/s00168-015-0661-5. <div id="Halleck Vega--2018"></div> Halleck Vega, S., A. Mandel, and K. Millock, 2018: Accelerating diffusion of climate-friendly technologies: A network perspective. ''Ecol. Econ.'' , '''152''' (June), 235–245, doi:10.1016/j.ecolecon.2018.05.007. <div id="Halleck Vega--2018"></div> Halleck Vega, S. and A. Mandel, 2018: Technology Diffusion and Climate Policy: A Network Approach and its Application to Wind Energy. ''Ecol. Econ.'' , '''145''' (December 2017), 461–471, doi:10.1016/j.ecolecon.2017.11.023. <div id="Hallegatte--2012"></div> Hallegatte, S., 2012: ''A cost effective solution to reduce disaster losses in developing countries: Hydro-meterological services, early warning and evacuation'' . Policy Research Working Paper; No. 6058. World Bank, Washington, DC, USA, 22 pp. [http://hdl.handle.net/10986/9359 http://hdl.handle. net/10986/9359] . <div id="Hanley--2018"></div> Hanley, E.S., J. Deane, and B.Ó. Gallachóir, 2018: The role of hydrogen in low carbon energy futures – A review of existing perspectives. ''Renew. Sustain. Energy Rev.'' , '''82''' , 3027–3045, doi:10.1016/j.rser.2017.10.034. <div id="Hanna--2021"></div> Hanna, R. and D.G. Victor, 2021: Marking the decarbonization revolutions. ''Nat. Energy'' , '''6(6)''' , 568–571, doi:10.1038/s41560-021-00854-1. <div id="Hansen--2017"></div> Hansen, H.K. and T. Porter, 2017: What Do Big Data Do in Global Governance? ''Glob. Gov. A Rev. Multilater. Int. Organ.'' , '''23(1)''' , 31–42, doi:https://doi.org/10.1163/19426720-02301004. <div id="Hansen--2018"></div> Hansen, U.E. et al., 2018: Sustainability transitions in developing countries: Stocktaking, new contributions and a research agenda. ''Environ. Sci. Policy'' , '''84''' , 198–203, doi:10.1016/j.envsci.2017.11.009. <div id="Hao--2016"></div> Hao, H., S. Wang, Z. Liu, and F. Zhao, 2016: The impact of stepped fuel economy targets on automaker’s light-weighting strategy: The China case. ''Energy'' , '''94''' , 755–765, doi:10.1016/j.energy.2015.11.051. <div id="Harrowsmith--2020"></div> Harrowsmith, M. et al., 2020: ''The future of forecasts: Impact-based forecasting for early action'' .ARRCC, Met Office, Climate Centre, UK Aid, Anticipation Hub, REAP, Geneva, 81 pp. [https://www.forecast-based-financing.org/wp-content/uploads/2020/09/Impact-based-forecasting-guide-2020.pdf https://www.forecast-based-financing.org/wp-content/uploads/2020/09/Impact-based-forecasting- guide-2020.pdf] . <div id="Haščič--2015"></div> Haščič, I. and M. Migotto, 2015: Measuring environmental innovation using patent data. ''OECD Environ. Work. Pap.'' , '''89''' , 58, doi:https://doi.org/10.1787/19970900. <div id="Haselip--2015"></div> Haselip, J. et al., 2015: Governance, enabling frameworks and policies for the transfer and diffusion of low carbon and climate adaptation technologies in developing countries. ''Clim. Change'' , '''131(3)''' , 363–370, doi:10.1007/s10584-015-1440-0. <div id="Hassler--2012"></div> Hassler, J., P. Krusell, and C. Olovsson, 2012: Energy-Saving Technical Change. ''National Bureau of Economic Research (NBER) Working Paper Series'' , '''18456''' , 41, doi:10.3386/w18456. <div id="He--2019"></div> He, W. and R. Shen, 2019: ISO 14001 Certification and Corporate Technological Innovation: Evidence from Chinese Firms. ''J. Bus. Ethics'' , '''158(1)''' , 97–117, doi:10.1007/s10551-017-3712-2. <div id="He--2019"></div> He, X. et al., 2019: Solar and wind energy enhances drought resilience and groundwater sustainability. ''Nat. Commun.'' , '''10(1)''' , 4893, doi:10.1038/s41467-019-12810-5. <div id="Heeks--2015"></div> Heeks, R. and C. Stanforth, 2015: Technological change in developing countries: Opening the black box of process using actor–network theory. ''Dev. Stud. Res.'' , '''2(1)''' , 33–50, doi:10.1080/21665095.2015.1026610. <div id="Heffron--2018"></div> Heffron, R.J. and D. McCauley, 2018: What is the ‘Just Transition’? ''Geoforum'' , '''88''' , 74–77, doi:10.1016/J.GEOFORUM.2017.11.016. <div id="Hekkert--2007"></div> Hekkert, M., R. Suurs, S. Negro, S. Kuhlmann, and R. Smits, 2007: Functions of innovation systems: A new approach for analysing technological change. ''Technol. Forecast. Soc. Change'' , '''74(4)''' , 413–432. <div id="Hekkert--2009"></div> Hekkert, M.P. and S.O. Negro, 2009: Functions of innovation systems as a framework to understand sustainable technological change: Empirical evidence for earlier claims. ''Technol. Forecast. Soc. Change'' , '''76(4)''' , 584–594, doi:10.1016/j.techfore.2008.04.013. <div id="Hekkert--2020"></div> Hekkert, M.P., M.J. Janssen, J.H. Wesseling, and S.O. Negro, 2020: Mission-oriented innovation systems. ''Environ. Innov. Soc. Transitions'' , '''34''' , 76–79, doi:10.1016/j.eist.2019.11.011. <div id="Heller--1998"></div> Heller, M.A. and R.S. Eisenberg, 1998: Can Patents Deter Innovation? The Anticommons in Biomedical Research. ''Science'' , '''280(5364)''' , 698–701, doi:10.1126/science.280.5364.698. <div id="Hellsmark--2016"></div> Hellsmark, H., J. Frishammar, P. Söderholm, and H. Ylinenpää, 2016: The role of pilot and demonstration plants in technology development and innovation policy. ''Res. Policy'' , '''45(9)''' , 1743–1761, doi:10.1016/j.respol.2016.05.005. <div id="Helm--2003"></div> Helm, D., C. Hepburn, and R. Mash, 2003: Credible carbon policy. ''Oxford Rev. Econ. Policy'' , '''19(3)''' , 438–450. https://doi.org/10.1093/oxrep/19.3.438. <div id="Helveston--2019"></div> Helveston, J. and J. Nahm, 2019: China’s key role in scaling low-carbon energy technologies. ''Science'' , '''366(6467)''' , 794–796, doi:10.1126/science.aaz1014. <div id="Hémous--2016"></div> Hémous, D., 2016: The dynamic impact of unilateral environmental policies. ''J. Int. Econ.'' , '''103''' (C), 80–95, doi:10.1016/j.jinteco.2016.09.001. <div id="Henderson--2011"></div> Henderson, R. and R. Newell, 2011: Introduction. In: ''Accelerating Energy Innovation'' [Henderson, R. and R. Newell, (eds.)], Chicago University Press, Chicago, USA, pp. 288. <div id="Henry--2020"></div> Henry, M.S., M.D. Bazilian, and C. Markuson, 2020: Just transitions: Histories and futures in a post-COVID world. ''Energy Res. Soc. Sci.'' , '''68''' , 101668, doi:10.1016/j.erss.2020.101668. <div id="Herslund--2018"></div> Herslund, L. et al., 2018: Conditions and opportunities for green infrastructure – Aiming for green, water-resilient cities in Addis Ababa and Dar es Salaam. ''Landsc. Urban Plan.'' , '''180''' , 319–327, doi:10.1016/j.landurbplan.2016.10.008. <div id="Hertwich--2009"></div> Hertwich, E.G. and G.P. Peters, 2009: Carbon Footprint of Nations: A Global, Trade-Linked Analysis. ''Environ. Sci. Technol.'' , '''43(16)''' , 6414–6420, doi:10.1021/es803496a. <div id="Hirsch--2018"></div> Hirsch, A., Y. Parag, and J. Guerrero, 2018: Microgrids: A review of technologies, key drivers, and outstanding issues. ''Renew. Sustain. Energy Rev.'' , '''90''' , 402–411, doi:https://doi.org/10.1016/j.rser.2018.03.040. <div id="Hoffecker--2021"></div> Hoffecker, E., 2021: Understanding inclusive innovation processes in agricultural systems: A middle-range conceptual model. ''World Dev.'' , '''140''' , 105382, doi:https://doi.org/10.1016/j.worlddev.2020.105382. <div id="Hofman--2019"></div> Hofman, E. and W. van der Gaast, 2019: Enhancing ambition levels in nationally determined contributions – Learning from Technology Needs Assessments. ''Wiley Interdiscip. Rev. Energy Environ.'' , '''8(1)''' , e311, doi:10.1002/wene.311. <div id="Holt-Giménez--2002"></div> Holt-Giménez, E., 2002: Measuring farmers’ agroecological resistance after Hurricane Mitch in Nicaragua: A case study in participatory, sustainable land management impact monitoring. ''Agric. Ecosyst. Environ.'' , '''93(1-3)''' , 87–105 doi:10.1016/S0167-8809 '''(02)''' 00006-3. <div id="Hoppmann--2013"></div> Hoppmann, J., M. Peters, M. Schneider, and V.H. Hoffmann, 2013: The two faces of market support – How deployment policies affect technological exploration and exploitation in the solar photovoltaic industry. ''Res. Policy'' , '''42(4)''' , 989–1003, doi:10.1016/j.respol.2013.01.002. <div id="Hoppmann--2014"></div> Hoppmann, J., J. Huenteler, and B. Girod, 2014: Compulsive policy-making – The evolution of the German feed-in tariff system for solar photovoltaic power. ''Res. Policy'' , '''43(8)''' , 1422–1441, doi:10.1016/j.respol.2014.01.014. <div id="Hoppmann--2019"></div> Hoppmann, J., F. Naegele, and B. Girod, 2019: Boards as a Source of Inertia: Examining the Internal Challenges and Dynamics of Boards of Directors in Times of Environmental Discontinuities. ''Acad. Manag. J.'' , '''62(2)''' , 437–468, doi:10.5465/amj.2016.1091. <div id="Horbach--2012"></div> Horbach, J., C. Rammer, and K. Rennings, 2012: Determinants of eco-innovations by type of environmental impact – The role of regulatory push/pull, technology push and market pull. ''Ecol. Econ.'' , '''78''' , 112–122, doi:10.1016/j.ecolecon.2012.04.005. <div id="Horner--2016"></div> Horner, N.C., A. Shehabi, and I.L. Azevedo, 2016: Known unknowns: Indirect energy effects of information and communication technology. ''Environ. Res. Lett.'' , '''11(10)''' , 103001, doi:10.1088/1748-9326/11/10/103001. <div id="Horton--2003"></div> Horton, D. and R. Mackay, 2003: Using evaluation to enhance institutional learning and change: Recent experiences with agricultural research and development. ''Agric. Syst.'' , '''78(2)''' , 127–142, doi:10.1016/S0308-521X '''(03)''' 00123-9. <div id="Hossain--2018"></div> Hossain, M., 2018: Frugal innovation: A review and research agenda. ''J. Clean. Prod.'' , '''182''' , 926–936, doi:10.1016/J.JCLEPRO.2018.02.091. <div id="Howell--2017"></div> Howell, S.T., 2017: Financing innovation: Evidence from R&D Grants. ''Am. Econ. Rev.'' , '''107(4)''' , 1136–1164, doi:10.1257/aer.20150808. <div id="Howlett--2015"></div> Howlett, M. and P. del Rio, 2015: The parameters of policy portfolios: Verticality and horizontality in design spaces and their consequences for policy mix formulation. ''Environ. Plan. C Gov. Policy'' , '''33(5)''' , 1233–1245, doi:10.1177/0263774X15610059. <div id="Hsu--2017"></div> Hsu, S.-L., 2017: Capital Transitioning: An International Human Capital Strategy for Climate Innovation. ''Transnatl. Environ. Law'' , '''6(1)''' , 153–176, doi:10.1017/S2047102516000169. <div id="Hu--2018"></div> Hu, R., J. Skea, and M.J. Hannon, 2018: Measuring the energy innovation process: An indicator framework and a case study of wind energy in China. ''Technol. Forecast. Soc. Change'' , '''127''' , 227–244, doi:10.1016/j.techfore.2017.09.025. <div id="Huang--2016"></div> Huang, R. et al., 2016: Energy and emissions saving potential of additive manufacturing: The case of lightweight aircraft components. ''J. Clean. Prod.'' , '''135''' , 1559–1570, doi:10.1016/j.jclepro.2015.04.109. <div id="Huenteler--2016a"></div> Huenteler, J., C. Niebuhr, and T.S. Schmidt, 2016a: The effect of local and global learning on the cost of renewable energy in developing countries. ''J. Clean. Prod.'' , '''128''' , 6–21, doi:10.1016/j.jclepro.2014.06.056. <div id="Huenteler--2016b"></div> Huenteler, J., T.S. Schmidt, J. Ossenbrink, and V.H. Hoffmann, 2016b: Technology life-cycles in the energy sector – Technological characteristics and the role of deployment for innovation. ''Technol. Forecast. Soc. Change'' , '''104''' , 102–121, doi:10.1016/j.techfore.2015.09.022. <div id="Hughes--2020"></div> Hughes, S., S. Giest, and L. Tozer, 2020: Accountability and data-driven urban climate governance. ''Nat. Clim. Chang.'' , '''10(12)''' , 1085–1090, doi:10.1038/s41558-020-00953-z. <div id="Huh--2018"></div> Huh, T. and H.-J. Kim, 2018: Korean Experimentation of Knowledge and Technology Transfer to Address Climate Change in Developing Countries. ''Sustainability'' , '''10(4)''' , 1263, doi:10.3390/su10041263. <div id="Hussein--2015"></div> Hussein, A.K., 2015: Applications of nanotechnology in renewable energies – A comprehensive overview and understanding. ''Renew. Sustain. Energy Rev.'' , '''42''' , 460–476, doi:10.1016/j.rser.2014.10.027. <div id="ICLEI--2018"></div> [[#ICLEI--2018|ICLEI, 2018]] : ''Energy Innovation Procurement: A guide for city authorities'' . ICLEI, Freiburg, Germany, 48 pp. <div id="IEA--2015"></div> [[#IEA--2015|IEA, 2015]] : ''4E: Achievements of Appliance Energy Efficiency Standards and Labelling Programs'' . IEA, Paris, France, pp 25. [https://www.iea.org/reports/achievements-of-appliance-energy-efficiency-standards-and-labelling-programs https://www.iea.org/reports/achievements-of-appliance-energy-efficiency-standards-and-labe lling-programs] . <div id="IEA--2017a"></div> [[#IEA--2017a|IEA, 2017a]] : ''Early-Stage Venture Capital for Energy Innovation'' . IEA, Paris, France, 25 pp. https://www.iea.org/reports/early-stage-venture-capital-for-energy-innovation (Accessed December 18, 2020). <div id="IEA--2017b"></div> [[#IEA--2017b|IEA, 2017b]] : ''Digitalisation and Energy'' . IEA, Paris, France, 181 pp. <div id="IEA--2019"></div> [[#IEA--2019|IEA, 2019]] : ''Energy technology RD&D – Data services'' . IEA, Paris, France, https://www.iea.org/subscribe-to-data-services/energy-technology-rdd (Accessed December 12, 2020). <div id="IEA--2020a"></div> [[#IEA--2020a|IEA, 2020a]] : ''Energy Technology Perspectives 2020'' . IEA, Paris, France, 400 pp. https://www.iea.org/reports/energy-technology-perspectives-2020 (Accessed July 21, 2021). <div id="IEA--2020b"></div> [[#IEA--2020b|IEA, 2020b]] : ''Energy Technology Perspectives: Special report on Clean Energy Innovation'' . IEA, Paris, France, 185 pp. [https://iea.blob.core.windows.net/assets/04dc5d08-4e45-447d-a0c1-d76b5ac43987/Energy_Technology_Perspectives_2020_-_Special_Report_on_Clean_Energy_Innovation.pdf https://iea.blob.core.windows.net/assets/04dc5d08-4e45-447d-a0c1-d76b5ac43987/Energy_Technology_Perspectives_2020_-_Special_Report_on_Clean_Energy_ Innovation.pdf] . <div id="IEA--2020c"></div> [[#IEA--2020c|IEA, 2020c]] : ''World Enery Outlook'' . IEA, Paris, France, 464 pp. <div id="Inoue--2013"></div> Inoue, E., T.H. Arimura, and M. Nakano, 2013: A new insight into environmental innovation: Does the maturity of environmental management systems matter? ''Ecol. Econ.'' , '''94''' , 156–163, doi:10.1016/j.ecolecon.2013.07.014. <div id="IPBES--2019"></div> [[#IPBES--2019|IPBES, 2019]] : ''Summary for policymakers of the global assessment report on biodiversity and ecosystem services of the Intergovernmental Science-Policy Platform on Biodiversity and Ecosystem Services'' . IPBES, Bonn, Germany, 56 pp. <div id="IPCC--2000"></div> [[#IPCC--2000|IPCC, 2000]] : ''Methodological and Technological Issues in Technology Transfer'' . [Metz, B., D. Ogunlade, J.-W. Martens, S. Van Rooijen, and L. Van Wie Mcgrory, (eds.)]. Cambridge University Press, Cambridge, UK, 432 pp. <div id="IPCC--2007"></div> [[#IPCC--2007|IPCC, 2007]] : ''Climate Change 2007: Mitigation of Climate Change'' . Contribution of Working Group III to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, 2007. [Metz, B., O.R. Davidson, P.R. Bosch, R. Dave, and L.A. Meyer, (eds.)]. Cambridge University Press, Cambridge, UK and New York, NY, USA, 863 pp. <div id="IPCC--2012"></div> [[#IPCC--2012|IPCC, 2012]] : ''Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation'' . ''A Special Report of Working Groups I and II of the Intergovernmental Panel on Climate Change.'' [Field, C.B., V. Barros, T.F. Stocker, D. Qin, D.J. Dokken, K.L. Ebi, M.D. Mastrandrea, K.J. Mach, G.-K. Plattner, S.K. Allen, M. Tignor, and P.M. Midgley (eds.)]. Cambridge University Press, Cambridge, UK and New York, NY, USA, 582 pp. <div id="IPCC--2014"></div> [[#IPCC--2014|IPCC, 2014]] : ''Climate Change 2014: Mitigation of Climate Change. Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change'' [Edenhofer, O., R. Pichs-Madruga, Y. Sokona, E. Farahani, S. Kadner, K. Seyboth, A. Adler, I. Baum, S. Brunner, P. Eickemeier, B. Kriemann, J. Savolainen, S. Schlömer, C. von Stechow, T. Zwickel and J.C. Minx (eds.)]. Cambridge University Press, Cambridge, UK, and New York, NY, USA, 1454 pp. <div id="IPCC--2018a"></div> [[#IPCC--2018a|IPCC, 2018a]] : ''Global Warming of 1.5°C. An IPCC Special Report on the impacts of global warming of 1.5°C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of strengthening the global response to the threat of climate change, sustainable development, and efforts to eradicate poverty'' [Masson-Delmotte, V., P. Zhai, H.-O. Pörtner, D. Roberts, J. Skea, P.R. Shukla, A. Pirani, W. Moufouma-Okia, C. Péan, R. Pidcock, S. Connors, J.B.R. Matthews, Y. Chen, X. Zhou, M.I. Gomis, E. Lonnoy, T. Maycock, M. Tignor, and T. Waterfield (eds.)]. Cambridge University Press, Cambridge, UK and New York, NY, USA. <div id="IPCC--2018b"></div> [[#IPCC--2018b|IPCC, 2018b]] : Summary for Policymakers. In: ''Global Warming of 1.5°C. An IPCC Special Report on the impacts of global warming of 1.5°C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of strengthening the global response to the threat of climate change, sustainable development, and efforts to eradicate poverty'' [Masson-Delmotte, V., P. Zhai, H.-O. Pörtner, D. Roberts, J. Skea, P.R. Shukla, A. Pirani, W. Moufouma-Okia, C. Péan, R. Pidcock, S. Connors, J.B.R. Matthews, Y. Chen, X. Zhou, M.I. Gomis, E. Lonnoy, T. Maycock, M. Tignor, and T. Waterfield (eds.)]. Cambridge University Press, Cambridge, UK and New York, NY, USA. <div id="IRENA--2020a"></div> [[#IRENA--2020a|IRENA, 2020a]] : ''Renewable energy statistics'' . IRENA, Abu Dhabi, 408 pp. [https://www.irena.org/publications/2020/Jul/Renewable-energy-statistics-2020 https://www.irena.org/publications/2020/Jul/Renewable-energy-s tatistics-2020] . <div id="IRENA--2020b"></div> [[#IRENA--2020b|IRENA, 2020b]] : ''Renewable Power Generation Costs in 2019'' . IRENA, Abu Dhabi, 144 pp. https://www.irena.org/publications/2020/Jun/Renewable-Power-Costs-in-2019 (Accessed October 30, 2021). <div id="Isoard--2001"></div> Isoard, S. and A. Soria, 2001: Technical change dynamics: Evidence from the emerging renewable energy technologies. ''Energy Econ.'' , '''23(6)''' , 619–636, doi:10.1016/S0140-9883 '''(01)''' 00072-X. <div id="Ito--2018"></div> Ito, K. and J.M. Sallee, 2018: The Economics of Attribute-Based Regulation: Theory and Evidence from Fuel Economy Standards. ''Rev. Econ. Stat.'' , '''100(2)''' , 319–336, doi:10.1162/REST_a_00704. <div id="Ivanova--2018"></div> Ivanova, D. et al., 2018: Carbon mitigation in domains of high consumer lock-in. ''Glob. Environ. Chang.'' , '''52''' , 117–130, doi:10.1016/j.gloenvcha.2018.06.006. <div id="Iyer--2015"></div> Iyer, G. et al., 2015: Diffusion of low-carbon technologies and the feasibility of long-term climate targets. ''Technol. Forecast. Soc. Change'' , '''90''' (PA), 103–118, doi:10.1016/j.techfore.2013.08.025. <div id="Jacobsen--2013"></div> Jacobsen, M.R., 2013: Evaluating US Fuel Economy Standards in a Model with Producer and Household Heterogeneity. ''Am. Econ. J. Econ. Policy'' , '''5(2)''' , 148–187, doi:10.1257/pol.5.2.148. <div id="Jacobsson--2006"></div> Jacobsson, S. and A. Bergek, 2006: A Framework for Guiding Policy-makers Intervening in Emerging Innovation Systems in ‘Catching-Up’ Countries. ''Eur. J. Dev. Res.'' , '''18(4)''' , 687–707, doi:10.1080/09578810601094902. <div id="Jacobsson--2004"></div> Jacobsson, S., B. Sandén, and L. Bångens, 2004: Transforming the Energy System — the Evolution of the German Technological System for Solar Cells. ''Technol. Anal. Strateg. Manag.'' , '''16(1)''' , 3–30, doi:10.1080/0953732032000199061. <div id="Jacobsson--2017"></div> Jacobsson, S., A. Bergek, and B. Sandén, 2017: Improving the European Commission’s analytical base for designing instrument mixes in the energy sector: Market failures versus system weaknesses. ''Energy Res. Soc. Sci.'' , '''33''' , 11–20, doi:10.1016/j.erss.2017.09.009. <div id="Jaffe--2004"></div> Jaffe, A. and J. Lerner, 2004: ''Innovation and its discontents: How our broken patent system is endangering innovation and progress, and what to do about it'' . Princeton University Press, Princeton, New Jersey, USA, 256 pp. <div id="Jaffe--2015"></div> Jaffe, A.B., 2015: Technology diffusion. In: ''Emerging Trends in the Social and Behavioral Sciences'' [Scott, R. and Kosslyn, (eds.)], John Wiley and Sons Inc., Hoboken, New Jersey, USA. doi: 10.1002/9781118900772. <div id="Jaffe--2017"></div> Jaffe, A.B. and G. de Rassenfosse, 2017: Patent citation data in social science research: Overview and best practices. ''J. Assoc. Inf. Sci. Technol.'' , '''68(6)''' , 1360–1374, doi:10.1002/asi.23731. <div id="Jaffe--2000"></div> Jaffe, A.B., R.G. Newell, and R.N. Stavins, 2000: Technological Change and the Environment. ''SSRN Electron. J.'' , '''1''' , doi:10.2139/ssrn.252927. <div id="Jaffe--2005"></div> Jaffe, A.B., R.G. Newell, and R.N. Stavins, 2005: A tale of two market failures: Technology and environmental policy. ''Ecol. Econ.'' , '''54(''' '''2–3''' ''')''' , 164–174, doi:10.1016/j.ecolecon.2004.12.027. <div id="Jain--2018"></div> Jain, M., A.B. Rao, and A. Patwardhan, 2018: Appliance labeling and consumer heterogeneity: A discrete choice experiment in India. ''Appl. Energy'' , '''226''' , 213–224, doi:10.1016/j.apenergy.2018.05.089. <div id="Jairaj--2016"></div> Jairaj, B., A. Agarwal, T. Parthasarathy, and S. Martin, 2016: ''Strengthening Governance of India’s Appliance Efficiency Standards and Labeling Program'' . World Resources Institute, New Delhi, India, 28 pp. <div id="Jamasb--2005"></div> Jamasb, T. and M. Pollitt, 2005: ''Deregulation and R&D in Network Industries: The Case of the Electricity Industry'' . Cambridge Working Papers in Economics (CWPE), 0533, Cambridge, UK, 45 pp. <div id="Jamasb--2007"></div> Jamasb, T., 2007: Technical Change Theory and Learning Curves: Patterns of Progress in Energy Technologies. ''Energy J.'' , '''28(3)''' , 51–72, doi:10.2307/41323109. <div id="Jamasb--2008"></div> Jamasb, T. and M. Pollitt, 2008: Liberalisation and R&D in network industries: The case of the electricity industry. ''Res. Policy'' , '''37(''' '''6–7''' ''')''' , 995–1008, doi:10.1016/j.respol.2008.04.010. <div id="Jasanoff--2003"></div> Jasanoff, S., 2003: Technologies of Humility: Citizen Participation in Governing Science. ''Minerva'' , '''41(3)''' , 223–244, doi:10.1023/A:1025557512320. <div id="Jasanoff--2018"></div> Jasanoff, S., 2018: Just transitions: A humble approach to global energy futures. ''Energy Res. Soc. Sci.'' , '''35''' , 11–14, doi:10.1016/j.erss.2017.11.025. <div id="Johnstone--2018"></div> Johnstone, P. and P. Newell, 2018: Sustainability transitions and the state. ''Environ. Innov. Soc. Transitions'' , '''27''' , 72–82, doi:10.1016/j.eist.2017.10.006. <div id="Jones--2018"></div> Jones, N., 2018: How to stop data centres from gobbling up the world’s electricity. ''Nature'' , '''561(7722)''' , 163–166, doi:10.1038/d41586-018-06610-y. <div id="Joshi--2019"></div> Joshi, G.Y., P.A. Sheorey, and A.V. Gandhi, 2019: Analyzing the barriers to purchase intentions of energy efficient appliances from consumer perspective. ''Benchmarking An Int. J.'' , '''26(5)''' , 1565–1580, doi:10.1108/BIJ-03-2018-0082. <div id="Kaack--2022"></div> Kaack, L. et al., 2022: ''Aligning artificial intelligence with climate change mitigation'' . Nature Climate Change, 12, pp.518–527. <div id="Kahn--2014"></div> Kahn, M.E. and N. Kok, 2014: The capitalization of green labels in the California housing market. ''Reg. Sci. Urban Econ.'' , '''47''' , 25–34, doi:10.1016/j.regsciurbeco.2013.07.001. <div id="Kahouli--2011"></div> Kahouli, S., 2011: Effects of technological learning and uranium price on nuclear cost: Preliminary insights from a multiple factors learning curve and uranium market modeling. ''Energy Econ.'' , '''33(5)''' , 840–852, doi:10.1016/J.ENECO.2011.02.016. <div id="Kammen--2007"></div> Kammen, D.M. and G.F. Nemet, 2007: Energy Myth Eleven – Energy R&D Investment Takes Decades to Reach the Market. In: ''Energy and American Society – Thirteen Myths'' [Sovacool, B.K. and M.A. Brown, (eds.)], Springer Netherlands, Dordrecht, Netherlands, pp. 289–309. <div id="Kang--2020"></div> Kang, J.-N. et al., 2020: The Prospects of Carbon Capture and Storage in China’s Power Sector under the 2°C Target: A Component-based Learning Curve Approach. ''Int. J. Greenh. Gas Control'' , '''101''' , 103149, doi:10.1016/j.ijggc.2020.103149. <div id="Karakosta--2012"></div> Karakosta, C., H. Doukas, and J. Psarras, 2012: Carbon market and technology transfer: Statistical analysis for exploring implications. ''Int. J. Sustain. Dev. World Ecol.'' , '''19(4)''' , 311–320, doi:10.1080/13504509.2011.644638. <div id="Karkatsoulis--2016"></div> Karkatsoulis, P., P. Capros, P. Fragkos, L. Paroussos, and S. Tsani, 2016: First-mover advantages of the European Union’s climate change mitigation strategy. ''Int. J. Energy Res.'' , '''40(6)''' , 814–830, doi:10.1002/er.3487. <div id="Karlsson--2020"></div> Karlsson, M., E. Alfredsson, and N. Westling, 2020: Climate policy co-benefits: A review. ''Clim. Policy'' , '''20(3)''' , 292–316, doi:10.1080/14693062.2020.1724070. <div id="Kavlak--2018"></div> Kavlak, G., J. McNerney, and J.E. Trancik, 2018: Evaluating the causes of cost reduction in photovoltaic modules. ''Energy Policy'' , '''123''' , 700–710, doi:10.1016/j.enpol.2018.08.015. <div id="Kemp--2005"></div> Kemp, R., 2005: Zero emission vehicle mandate in California: Misguided policy or example of enlightened leadership. In: ''Time Strategies, Innovation and Environmental Policy'' [Sartorius, C. and S. Zundel, (eds.)], Edward Elgar Publishing, Cheltenham, UK and Northhampton, MA, USA, pp. 169–191. <div id="Kemp--2011"></div> Kemp, R., 2011: Ten themes for eco-innovation policies in Europe. ''Sapie'' ''ns'' , '''4(2)''' , 1–20. <div id="Kemp--1990"></div> Kemp, R. and L. Soete, 1990: Inside the “green box”: On the economics of technological change and the environment. In: New Explor. Econ. Technol. Chang.[Freeman, C. and Soete, L. (eds.)], Pinter, London, UK, pp 244–257. <div id="Kemp--1998"></div> Kemp, R., J. Schot, and R. Hoogma, 1998: Regime shifts to sustainability through processes of niche formation: The approach of strategic niche management. ''Technol. Anal. Strateg. Manag.'' , '''10(2)''' , 175–198, doi:10.1080/09537329808524310. <div id="Kern--2009"></div> Kern, F. and M. Howlett, 2009: Implementing transition management as policy reforms: A case study of the Dutch energy sector. ''Policy Sci.'' , '''42(4)''' , 391–408, doi:10.1007/s11077-009-9099-x. <div id="Kerras--2020"></div> Kerras, H., J.L. Sánchez-Navarro, E.I. López-Becerra, and M.D. de-M. Gómez, 2020: The Impact of the Gender Digital Divide on Sustainable Development: Comparative Analysis between the European Union and the Maghreb. ''Sustain.,'' '''12(8)''' , 3347, doi:10.3390/SU12083347. <div id="Khalili--2015"></div> Khalili, N.R., S. Duecker, W. Ashton, and F. Chavez, 2015: From cleaner production to sustainable development: The role of academia. ''J. Clean. Prod.'' , '''96''' , 30–43, doi:10.1016/j.jclepro.2014.01.099. <div id="Khan--2020"></div> Khan, M., D. Mfitumukiza, and S. Huq, 2020: Capacity building for implementation of nationally determined contributions under the Paris Agreement. ''Clim. Policy'' , '''20(4)''' , 499–510, doi:10.1080/14693062.2019.1675577. <div id="Khanna--2021"></div> Khanna, T.M. et al., 2021: A multi-country meta-analysis on the role of behavioural change in reducing energy consumption and CO 2 emissions in residential buildings. ''Nat. Energy'' , '''6(9)''' , 925–932, doi:10.1038/s41560-021-00866-x. <div id="Khosla--2017"></div> Khosla, R., A. Sagar, and A. Mathur, 2017: Deploying low-carbon technologies in developing countries: A view from India’s buildings sector. ''Environ. Policy Gov.'' , '''27(2)''' , 149–162, doi:10.1002/eet.1750. <div id="Kim--2020"></div> Kim, H.S. and S.-S. Kwak, 2020: Crop biotechnology for sustainable agriculture in the face of climate crisis. ''Plant Biotechnol. Rep.'' , '''14(2)''' , 139–141, doi:10.1007/s11816-020-00619-4. <div id="Kim--2019"></div> Kim, Y.J. and M. Brown, 2019: Impact of domestic energy-efficiency policies on foreign innovation: The case of lighting technologies. ''Energy Policy'' , '''128''' (January), 539–552, doi:10.1016/j.enpol.2019.01.032. <div id="Kimura--2006"></div> Kimura, O. and T. Suzuki, 2006: 30 years of solar energy development in Japan: Co-evolution process of technology, policies, and the market. ''Berlin Conference on the Human Dimensions of Global Environmental Change:'' ''“'' ''R'' ''esource Policies: Effectiveness, Efficiency and Equity”'' , 17–18 November 2006. Berlin, Germany. <div id="Kiso--2019"></div> Kiso, T., 2019: Environmental Policy and Induced Technological Change: Evidence from Automobile Fuel Economy Regulations. ''Environ. Resour. Econ.'' , '''74(2)''' , 785–810, doi:10.1007/s10640-019-00347-6. <div id="Kivimaa--2016"></div> Kivimaa, P. and F. Kern, 2016: Creative destruction or mere niche support? Innovation policy mixes for sustainability transitions. ''Res. Policy'' , '''45(1)''' , 205–217, doi:10.1016/j.respol.2015.09.008. <div id="Klaassen--2005"></div> Klaassen, G., A. Miketa, K. Larsen, and T. Sundqvist, 2005: The impact of R&D on innovation for wind energy in Denmark, Germany and the United Kingdom. ''Ecol. Econ.'' , '''54(''' '''2–3''' ''')''' , 227–240, doi:10.1016/j.ecolecon.2005.01.008. <div id="Klein Woolthuis--2005"></div> Klein Woolthuis, R., M. Lankhuizen, and V. Gilsing, 2005: A system failure framework for innovation policy design. ''Technovation'' , '''25(6)''' , 609–619, doi:10.1016/j.technovation.2003.11.002. <div id="Klerkx--2012"></div> Klerkx, L., B. van Mierlo, and C. Leeuwis, 2012: Evolution of systems approaches to agricultural innovation: Concepts, analysis and interventions. In: ''Farming Systems Research into the 21st Century: The New Dynamic'' [Darnhofer, I., D. Gibbon, and B. Dedieu, (eds.)], Springer Netherlands, Dordrecht, Netherlands, pp. 457–483. <div id="Klerkx--2019"></div> Klerkx, L., E. Jakku, and P. Labarthe, 2019: A review of social science on digital agriculture, smart farming and agriculture 4.0: New contributions and a future research agenda. ''NJAS - Wageningen J. Life Sci.'' , '''90''' – '''91''' , 100315, doi:10.1016/j.njas.2019.100315. <div id="Kline--1986"></div> Kline, S. and N. Rosenberg, 1986: An overview of innovation. In: ''The Positive Sum Strategy: Harnessing Technology for Economic Growth'' [Landau, R. and N. Rosenberg, (eds.)], The National Academies Press, Washington D.C., USA, pp. 275–306. <div id="Knittel--2011"></div> Knittel, C.R., 2011: Automobiles on Steroids: Product Attribute Trade-Offs and Technological Progress in the Automobile Sector. ''Am. Econ. Rev.'' , '''101(7)''' , 3368–3399, doi:10.1257/aer.101.7.3368. <div id="Knobloch--2016"></div> Knobloch, F. and J.-F. Mercure, 2016: The behavioural aspect of green technology investments: A general positive model in the context of heterogeneous agents. ''Environ. Innov. Soc. Transitions'' , '''21''' , 39–55, doi:10.1016/j.eist.2016.03.002. <div id="Koasidis--2020a"></div> Koasidis, K. et al., 2020a: Many Miles to Paris: A Sectoral Innovation System Analysis of the Transport Sector in Norway and Canada in Light of the Paris Agreement. ''Sustainability'' , '''12(14)''' , 5832, doi:10.3390/su12145832. <div id="Koasidis--2020b"></div> Koasidis, K. et al., 2020b: The UK and German Low-Carbon Industry Transitions from a Sectoral Innovation and System Failures Perspective. ''Energies'' , '''13(19)''' , 4994, doi:10.3390/en13194994. <div id="Koch--2016"></div> Koch, N., G. Grosjean, S. Fuss, and O. Edenhofer, 2016: Politics matters: Regulatory events as catalysts for price formation under cap-and-trade. ''J. Environ. Econ. Manage.'' , '''78''' , 121–139, doi:10.1016/j.jeem.2016.03.004. <div id="Koengkan--2020"></div> Koengkan, M., Y.E. Poveda, and J.A. Fuinhas, 2020: Globalisation as a motor of renewable energy development in Latin America countries. ''GeoJournal'' , '''85(6)''' , 1591–1602, doi:10.1007/s10708-019-10042-0. <div id="Koh--2008"></div> Koh, H. and C.L. Magee, 2008: A functional approach for studying technological progress: Extension to energy technology. ''Technol. Forecast. Soc. Change'' , '''75(6)''' , 735–758, doi:10.1016/j.techfore.2007.05.007. <div id="Köhler--2019"></div> Köhler, J. et al., 2019: An agenda for sustainability transitions research: State of the art and future directions. ''Environ. Innov. Soc. Transitions'' , '''31''' , 1–32, doi:10.1016/j.eist.2019.01.004. <div id="Koohafkan--2010"></div> Koohafkan, P. and M. Altieri, 2010: ''Globally important agricultural heritage systems: A legacy for the future'' . FAO, Rome, 41pp. <div id="Koronen--2020"></div> Koronen, C., M. Åhman, and L.J. Nilsson, 2020: Data centres in future European energy systems – energy efficiency, integration and policy. ''Energy Effic.'' , '''13(1)''' , 129–144, doi:10.1007/s12053-019-09833-8. <div id="Kotchen--2021"></div> Kotchen, M.J., 2021: The producer benefits of implicit fossil fuel subsidies in the United States. ''Proc. Natl. Acad. Sci.'' , '''118(14)''' , e2011969118, doi:10.1073/pnas.2011969118. <div id="Kowarsch--2016"></div> Kowarsch, M. et al., 2016: Scientific assessments to facilitate deliberative policy learning. ''Palgrave Commun.'' , '''2(1)''' , 16092, doi:10.1057/palcomms.2016.92. <div id="Kraus--2021"></div> Kraus, S. and N. Koch, 2021: Provisional COVID-19 infrastructure induces large, rapid increases in cycling. ''Proc. Natl. Acad. Sci.'' , '''118(15)''' , doi:10.1073/pnas.2024399118. <div id="Krey--2019"></div> Krey, V. et al., 2019: Looking under the hood: A comparison of techno-economic assumptions across national and global integrated assessment models. ''Energy'' , '''172''' , 1254–1267, doi:10.1016/j.energy.2018.12.131. <div id="Kriegler--2015"></div> Kriegler, E. et al., 2015: Making or breaking climate targets: The AMPERE study on staged accession scenarios for climate policy. ''Technol. Forecast. Soc. Change'' , '''90''' , 24–44, doi:10.1016/j.techfore.2013.09.021. <div id="Kuhl--2020"></div> Kuhl, L., K. Van Maanen, and S. Scyphers, 2020: An analysis of UNFCCC-financed coastal adaptation projects: Assessing patterns of project design and contributions to adaptive capacity. ''World Dev.'' , '''127''' , 104748, doi:10.1016/j.worlddev.2019.104748. <div id="Kumar--1999"></div> Kumar, V., U. Kumar, and A. Persaud, 1999: Building Technological Capability Through Importing Technology: The Case of Indonesian Manufacturing Industry. ''J. Technol. Transf.'' , '''24(1)''' , 81–96, doi:10.1023/A:1007728921126. <div id="Kunkel--2020"></div> Kunkel, S. and M. Matthess, 2020: Digital transformation and environmental sustainability in industry: Putting expectations in Asian and African policies into perspective. ''Environ. Sci. Policy'' , '''112''' , 318–329, doi:https://doi.org/10.1016/j.envsci.2020.06.022. <div id="Kuntze--2012"></div> Kuntze, J.-C. and T. Moerenhout, 2012: Local Content Requirements and the Renewable Energy Industry - A Good Match? ''SSRN Electron. J.'' , September, 19, doi:10.2139/ssrn.2188607. <div id="Kuoljok--2019"></div> Kuoljok, K., 2019: Without land we are lost: t=Traditional knowledge, digital technology and power relations. ''Altern. An Int. J. Indig. Peoples'' , '''15(4)''' , 349–358, doi:10.1177/1177180119890134. <div id="Kypreos--2003"></div> Kypreos, S. and O. Bahn, 2003: A MERGE Model with Endogenous Technological Progress. ''Environ. Model. Assess.'' , '''8''' , 249–259, doi:https://doi.org/ 10.1023/A:1025551408939. <div id="Lacal-Arántegui--2019"></div> Lacal-Arántegui, R., 2019: Globalization in the wind energy industry: Contribution and economic impact of European companies. ''Renew. Energy'' , '''134''' , 612–628, doi:10.1016/J.RENENE.2018.10.087. <div id="Lachapelle--2017"></div> Lachapelle, E., R. MacNeil, and M. Paterson, 2017: The political economy of decarbonisation: From green energy ‘race’ to green ‘division of labour.’ ''New Polit. Econ.'' , '''22(3)''' , 311–327, doi:10.1080/13563467.2017.1240669. <div id="Lafond--2018"></div> Lafond, F. et al., 2018: How well do experience curves predict technological progress? A method for making distributional forecasts. ''Technol. Forecast. Soc. Change'' , '''128''' , 104–117, doi:10.1016/j.techfore.2017.11.001. <div id="Laine--2020"></div> Laine, J., K. Kontu, J. Heinonen, and S. Junnila, 2020: Uncertain greenhouse gas implication in waste heat utilization – A case study with a data center. ''J. Sustain. Dev. Energy, Water Environ. Syst.'' , '''8(2)''' , 360–372, doi:10.13044/j.sdewes.d7.0301. <div id="Laird--2001"></div> Laird, F.N., 2001: ''Solar Energy, Technology Policy, and Institutional Values'' . Cambridge University Press, Cambridge, UK, 248 pp. <div id="Lambin--2011"></div> Lambin, E.F. and P. Meyfroidt, 2011: Global land use change, economic globalization, and the looming land scarcity. ''Proc. Natl. Acad. Sci.'' , '''108(9)''' , 3465–3472, doi:10.1073/pnas.1100480108. <div id="Lamperti--2020"></div> Lamperti, F., G. Dosi, M. Napoletano, A. Roventini, and A. Sapio, 2020: Climate change and green transitions in an agent-based integrated assessment model. ''Technol. Forecast. Soc. Change'' , '''153''' , 119806, doi:10.1016/j.techfore.2019.119806. <div id="Lange--2020"></div> Lange, S., J. Pohl, and T. Santarius, 2020: Digitalization and energy consumption. Does ICT reduce energy demand? ''Ecol. Econ.'' , '''176''' , 106760, doi:10.1016/j.ecolecon.2020.106760. <div id="Lauber--2016"></div> Lauber, V. and S. Jacobsson, 2016: The politics and economics of constructing, contesting and restricting socio-political space for renewables – The German Renewable Energy Act. ''Environ. Innov. Soc. Transitions'' , '''18''' , 147–163, doi:10.1016/j.eist.2015.06.005. <div id="Le Treut--2021"></div> Le Treut, G., J. Lefèvre, F. Lallana, and G. Bravo, 2021: The multi-level economic impacts of deep decarbonization strategies for the energy system. ''Energy Policy'' , '''156''' , 112423, doi:10.1016/j.enpol.2021.112423. <div id="Lee--2010"></div> Lee, J., F.M. Veloso, D.A. Hounshell, and E.S. Rubin, 2010: Forcing technological change: A case of automobile emissions control technology development in the US. ''Technovation'' , '''30(4)''' , 249–264, doi:10.1016/j.technovation.2009.12.003. <div id="Lee--2017"></div> Lee, T., 2017: The effect of clean energy regulations and incentives on green jobs: Panel analysis of the United States, 1998–2007. ''Nat. Resour. Forum'' , '''41(3)''' , 145–155, doi:10.1111/1477-8947.12125. <div id="Lee--2020"></div> Lee, W.J. and R. Mwebaza, 2020: The role of the Climate Technology Centre and Network as a Climate Technology and Innovation Matchmaker for Developing Countries. ''Sustainability'' , '''12(19)''' , 7956, doi:10.3390/su12197956. <div id="Lehmann--2012"></div> Lehmann, P., 2012: Justifying a policy mix for pollution control: A review of economic literature. ''J. Econ. Surv.'' , '''26(1)''' , 71–97, doi:10.1111/j.1467-6419.2010.00628.x. <div id="Lehoux--2014"></div> Lehoux, N., S. D’Amours, and A. Langevin, 2014: Inter-firm collaborations and supply chain coordination: Review of key elements and case study. ''Prod. Plan. Control'' , '''25(10)''' , 858–872, doi:10.1080/09537287.2013.771413. <div id="Lema--2015"></div> Lema, R., M. Iizuka, and R. Walz, 2015: Introduction to low-carbon innovation and development: Insights and future challenges for research. ''Innov. Dev.'' , '''5(2)''' , 173–187, doi:10.1080/2157930X.2015.1065096. <div id="Lema--2020"></div> Lema, R., X. Fu, and R. Rabellotti, 2020: Green windows of opportunity: Latecomer development in the age of transformation toward sustainability. ''Ind. Corp. Chang.'' , '''29(5)''' , 1193–1209, doi:10.1093/icc/dtaa044. <div id="Lema--2021"></div> Lema, R., P.L. Bhamidipati, C. Gregersen, U.E. Hansen, and J. Kirchherr, 2021: China’s investments in renewable energy in Africa: Creating co-benefits or just cashing-in? ''World Dev.'' , '''141''' , 105365, doi:10.1016/j.worlddev.2020.105365. <div id="Lepoutre--2018"></div> Lepoutre, J. and A. Oguntoye, 2018: The (non-)emergence of mobile money systems in Sub-Saharan Africa: A comparative multilevel perspective of Kenya and Nigeria. ''Technol. Forecast. Soc. Change'' , '''131''' , 262–275, doi:10.1016/j.techfore.2017.11.010. <div id="Levin--2012"></div> Levin, K., B. Cashore, S. Berstein, and G. Auld, 2012: Overcoming the tragedy of super wicked problems. ''Policy Sci.'' , '''45(2)''' , 123–152. <div id="Levinson--2019"></div> Levinson, A., 2019: Energy Efficiency Standards Are More Regressive Than Energy Taxes: Theory and Evidence. ''J. Assoc. Environ. Resour. Econ.'' , '''6''' (S1), S7–S36, doi:10.1086/701186. <div id="Lewis--2014"></div> Lewis, J.I., 2014: Industrial policy, politics and competition: Assessing the post-crisis wind power industry. ''Bus. Polit.'' , '''16(4)''' , 511–547, doi:10.1515/bap-2014-0012. <div id="Ley--2016"></div> Ley, M., T. Stucki, and M. Woerter, 2016: The Impact of Energy Prices on Green Innovation. ''Energy J.'' , '''37(1)''' , doi:10.5547/01956574.37.1.mley. <div id="Li--2019a"></div> Li, D., F. Tang, and J. Jiang, 2019a: Does environmental management system foster corporate green innovation? The moderating effect of environmental regulation. ''Technol. Anal. Strateg. Manag.'' , '''31(10)''' , 1242–1256, doi:10.1080/09537325.2019.1602259. <div id="Li--2020"></div> Li, J. et al., 2020: Does intellectual property rights protection constitute a barrier to renewable energy? An econometric analysis. ''Natl. Inst. Econ. Rev.'' , '''251''' , R37–R46, doi:10.1017/nie.2020.5. <div id="Li--2019b"></div> Li, Z., H. Dong, Z. Huang, and P. Failler, 2019b: Impact of Foreign Direct Investment on Environmental Performance. ''Sustainability'' , '''11(13)''' , 3538, doi:10.3390/su11133538. <div id="Liebowitz--1995"></div> Liebowitz, S.J. and S.E. Margolis, 1995: Path Dependence, Lock-In, and history. ''SSRN Electron. J.'' , '''11(1)''' , 205–226, doi:10.2139/ssrn.1706450. <div id="Lilliestam--2021"></div> Lilliestam, J., A. Patt, and G. Bersalli, 2021: The effect of carbon pricing on technological change for full energy decarbonization: A review of empirical ex‐post evidence. ''WIREs Clim. Chang.'' , '''12(1)''' , doi:10.1002/wcc.681. <div id="Lin--2019"></div> Lin, B. and Y. Chen, 2019: Does electricity price matter for innovation in renewable energy technologies in China? ''Energy Econ.'' , '''78''' , 259–266, doi:10.1016/j.eneco.2018.11.014. <div id="Littleton--2008"></div> Littleton, M., 2008: ''The TRIPS Agreement and Transfer of Climate- Change-Related Technologies to Developing Countries'' . UNDESA, New York, NY, USA, 48 pp. <div id="Littleton--2009"></div> Littleton, M., 2009: The TRIPS Agreement and transfer of climate-change-related technologies to developing countries. ''Nat. Resour. Forum'' , '''33(3)''' , 233–244, doi:10.1111/j.1477-8947.2009.01228.x. <div id="Lo--2014"></div> Lo, K., 2014: A critical review of China’s rapidly developing renewable energy and energy efficiency policies. ''Renew. Sustain. Energy Rev.'' , '''29''' , 508–516, doi:10.1016/j.rser.2013.09.006. <div id="Luderer--2019"></div> Luderer, G. et al., 2019: Environmental co-benefits and adverse side-effects of alternative power sector decarbonization strategies. ''Nat. Commun.'' , '''10(1)''' , 5229, doi:10.1038/s41467-019-13067-8. <div id="Lundvall--1988"></div> Lundvall, B.-Å., 1988: Innovation as an interactive process: From user-producer interaction to the national system of innovation. In: ''Technical Change and Economic Theory'' [Dosi, G., C. Freeman, R. Nelson, G. Silverberg, and L. Soete, (eds.)], Pinter Publishers, London UK and New York, NY, USA, pp 349–369. <div id="Lundvall--1992"></div> Lundvall, B.-Å., 1992: ''National Systems of Innovation: Toward a Theory of Innovation and Interactive Learning'' . [Lundvall, B.-A., (ed.)]. Pinter Publishers, London, UK, 342 pp. <div id="Lundvall--2009"></div> Lundvall, B.-Å., K. Joseph, C. Chaminade, and J. Vang, 2009: ''Handbook of Innovation Systems and Developing Countries'' . [Lundvall, B.-Å., K. Joseph, C. Chaminade, and J. Vang, (eds.)]. Edward Elgar Publishing, London, UK and New York, NY, USA, 416 pp. <div id="Lynch--2019"></div> Lynch, J.K., J. Glasby, and S. Robinson, 2019: If telecare is the answer, what was the question? Storylines, tensions and the unintended consequences of technology-supported care. ''Crit. Soc. Policy'' , '''39(1)''' , 44–65, doi:10.1177/0261018318762737. <div id="Lytle--2020"></div> Lytle, W. et al., 2020: Conceptual Design and Rationale for a New Agrivoltaics Concept: Pasture-Raised Rabbits and Solar Farming. ''J. Clean. Prod.'' , 124476, doi:10.1016/j.jclepro.2020.124476. <div id="Machlup--1958"></div> Machlup, F., 1958: ''An economic review of the patent system, Subcommittee on Patents, Trademarks & Copyrights of the Senate Committee on the Judiciary, 85th Cong., 2d Sess, study number 15'' . United States Government Printing Office, Washington D.C, USA, 94 pp. <div id="Machlup--1950"></div> Machlup, F. and E. Penrose, 1950: The Patent Controversy in the Nineteenth Century. ''J. Econ. Hist.'' , '''10(1)''' , 1–29, doi:10.1017/S0022050700055893. <div id="Maharajh--2010"></div> Maharajh, R. and E. Kraemer-Mbula, 2010: Innovation strategies in developing countries. In: ''Innovation and the Development Agenda'' , OECD Publishing, Paris, France, pp. 133–151. <div id="Mainali--2018"></div> Mainali, B., J. Luukkanen, S. Silveira, and J. Kaivo-oja, 2018: Evaluating Synergies and Trade-Offs among Sustainable Development Goals (SDGs): Explorative Analyses of Development Paths in South Asia and Sub-Saharan Africa. ''Sustain.'' '''10(3)''' , 815, doi:10.3390/SU10030815. <div id="Malhotra--2020"></div> Malhotra, A. and T.S. Schmidt, 2020: Accelerating Low-Carbon Innovation. ''Joule'' , '''4(11)''' , 2259–2267, doi:https://doi.org/10.1016/j.joule.2020.09.004. <div id="Malhotra--2021"></div> Malhotra, A., A. Mathur, S. Diddi, and A.D. Sagar, 2021: Building institutional capacity for addressing climate and sustainable development goals: Achieving energy efficiency in India. ''Clim. Policy'' , 22(5), 1–19, doi:10.1080/14693062.2021.1984195. <div id="Mancusi--2008"></div> Mancusi, M.L., 2008: International spillovers and absorptive capacity: A cross-country cross-sector analysis based on patents and citations. ''J. Int. Econ.'' , '''76(2)''' , 155–165, doi:10.1016/j.jinteco.2008.06.007. <div id="Mankins--1995"></div> Mankins, J., 1995: ''Technology Readiness Level – A White Paper'' . Advanced Concepts Office, Office of Space Access and Technology, National Aeronautics and Space Administration (NASA), Washington, USA, 6 pp. <div id="Mankins--2009"></div> Mankins, J.C., 2009: Technology readiness assessments: A retrospective. ''Acta Astronaut.'' , '''65(''' '''9–10''' ''')''' , 1216–1223, doi:10.1016/j.actaastro.2009.03.058. <div id="Marangoni--2014"></div> Marangoni, G. and M. Tavoni, 2014: The clean energy strategy for 2°C. ''Clim. Chang. Econ.'' , '''05(01)''' , 1440003, doi:10.1142/S201000781440003X. <div id="Markard--2018"></div> Markard, J., 2018: The next phase of the energy transition and its implications for research and policy. ''Nat. Energy'' , '''3(8)''' , 628–633, doi:10.1038/s41560-018-0171-7. <div id="Markard--2012"></div> Markard, J., R. Raven, and B. Truffer, 2012: Sustainability transitions: An emerging field of research and its prospects. ''Res. Policy'' , '''41(6)''' , 955–967, doi:10.1016/j.respol.2012.02.013. <div id="Markard--2020"></div> Markard, J., F.W. Geels, and R. Raven, 2020: Challenges in the acceleration of sustainability transitions. ''Environ. Res. Lett.'' , '''15(8)''' , 081001, doi:10.1088/1748-9326/AB9468. <div id="Marquardt--2016"></div> Marquardt, J., K. Steinbacher, and M. Schreurs, 2016: Driving force or forced transition? ''J. Clean. Prod.'' , '''128''' , 22–33, doi:10.1016/j.jclepro.2015.06.080. <div id="Masanet--2020"></div> Masanet, E., A. Shehabi, N. Lei, S. Smith, and J. Koomey, 2020: Recalibrating global data center energy-use estimates. ''Science'' , '''367(6481)''' , 984–986, doi:10.1126/science.aba3758. <div id="Maskus--2010"></div> Maskus, K., 2010: Differentiated Intellectual Property Regimes for Environmental and Climate Technologies. ''OECD Environment Working Papers'' , No. 17, OECD Publishing, Paris, France. doi:10.1787/5kmfwjvc83vk-en. <div id="Maskus--2017"></div> Maskus, K.E. and J.H. Reichman, 2017: The globalization of private knowledge goods and the privatization of global public goods. In: ''Globalization and Intellectual Property'' , Vol. 7, Routledge, London, UK, pp. 335–377. <div id="Maskus--2019"></div> Maskus, K.E., S. Milani, and R. Neumann, 2019: The impact of patent protection and financial development on industrial R&D. ''Res. Policy'' , '''48(1)''' , 355–370, doi:10.1016/j.respol.2018.09.005. <div id="Mastropietro--2014"></div> Mastropietro, P., C. Batlle, L.A. Barroso, and P. Rodilla, 2014: Electricity auctions in South America: Towards convergence of system adequacy and RES-E support. ''Renew. Sustain. Energy Rev.'' , '''40''' , 375–385, doi:10.1016/j.rser.2014.07.074. <div id="Masuku--2021"></div> Masuku, B. and O. Nzewi, 2021: The South African informal sector’s socio-economic exclusion from basic service provisions: A critique of Buffalo City Metropolitan Municipality’s approach to the informal sector. ''J. Energy South. Africa'' , '''32(2)''' , 59–71, doi:10.17159/2413-3051/2021/v32i2a5856. <div id="Matsuo--2019"></div> Matsuo, T. and T.S. Schmidt, 2019: Managing tradeoffs in green industrial policies: The role of renewable energy policy design. ''World Dev.'' , '''122''' , 11–26, doi:10.1016/j.worlddev.2019.05.005. <div id="Matthess--2020"></div> Matthess, M. and S. Kunkel, 2020: Structural change and digitalization in developing countries: Conceptually linking the two transformations. ''Technol. Soc.'' , '''63''' , 101428, doi:https://doi.org/10.1016/j.techsoc.2020.101428. <div id="May--2019"></div> May, P., 2019: ''Valuing'' externalities of cattle and soy-maize systems in the Brazilian Amazon: A Test of the TEEBAgriFood ''Framework'' , TEEB for Agriculture and Food, UN Environment Programme (UNEP), Nairobi, Kenya, 128 pp. <div id="Mayer--2001"></div> Mayer, J., 2001: ''Technology Diffusion, Human Capital and Economic Growth in Developing Countries'' . UNCTAD, Published Online. 47 pp. [https://unctad.org/system/files/official-document/dp_154.en.pdf https://unctad.org/system/files/official-document /dp_154.en.pdf] . <div id="Mayer--2012"></div> Mayer, T., D. Kreyenberg, J. Wind, and F. Braun, 2012: Feasibility study of 2020 target costs for PEM fuel cells and lithium-ion batteries: A two-factor experience curve approach. ''Int. J. Hydrogen Energy'' , '''37(19)''' , 14463–14474, doi:10.1016/j.ijhydene.2012.07.022. <div id="Mazhar--2014"></div> Mazhar, U., 2014: Environmental Regulation and the Informal Sector: Empirical Evidence – Legislazione ambientale ed economia sommersa: evidenze empiriche. ''Econ. Internazionale / Int. Econ.'' , '''67(4)''' , 471–491. <div id="Mazzucato--2013"></div> Mazzucato, M., 2013: ''The Entrepreneurial State'' . Anthem Press, London, UK, 288 pp. <div id="Mazzucato--2015a"></div> Mazzucato, M., 2015a: 6. Innovation, the State and Patient Capital. ''Polit. Q.'' , '''86''' , 98–118, doi:10.1111/1467-923X.12235. <div id="Mazzucato--2015b"></div> Mazzucato, M., 2015b: ''The Entrepreneurial State'' . Anthem Press, London, UK,266 pp. <div id="Mazzucato--2016"></div> Mazzucato, M., 2016: From market fixing to market-creating: A new framework for innovation policy. ''Ind. Innov.'' , '''23(2)''' , 140–156, doi:10.1080/13662716.2016.1146124. <div id="Mazzucato--2018"></div> Mazzucato, M., 2018: ''Mission-Oriented Research & Innovation in the European Union: A problem-solving approach to fuel innovation-led growth'' . European Commission, Brussels, 36 pp. <div id="Mazzucato--2017"></div> Mazzucato, M. and G. Semieniuk, 2017: Public financing of innovation: New questions. ''Oxford Rev. Econ. Policy'' , '''33(1)''' , 24–48, doi:10.1093/oxrep/grw036. <div id="Mazzucato--2018"></div> Mazzucato, M. and G. Semieniuk, 2018: Financing renewable energy: Who is financing what and why it matters. ''Technol. Forecast. Soc. Change'' , '''127''' , 8–22, doi:10.1016/j.techfore.2017.05.021. <div id="McCauley--2018"></div> McCauley, D. and R. Heffron, 2018: Just transition: Integrating climate, energy and environmental justice. ''Energy Policy'' , '''119''' , 1–7, doi:10.1016/j.enpol.2018.04.014. <div id="McCauley--2019"></div> McCauley, D. et al., 2019: Energy justice in the transition to low carbon energy systems: Exploring key themes in interdisciplinary research. ''Appl. Energy'' , '''233''' – '''234''' , 916–921, doi:10.1016/j.apenergy.2018.10.005. <div id="McDonald--2001"></div> McDonald, A. and L. Schrattenholzer, 2001: Learning rates for energy technologies. ''Energy Policy'' , '''29(4)''' , 255–261, doi:10.1016/S0301-4215 '''(00)''' 00122-1. <div id="McGee--2014"></div> McGee, J. and J. Wenta, 2014: Technology Transfer Institutions in Global Climate Governance: The Tension between Equity Principles and Market Allocation. ''Rev. Eur. Comp. Int. Environ. Law'' , '''23(3)''' , 367–381, doi:10.1111/reel.12075. <div id="McNeil--2008"></div> McNeil, M.A., M. Iyer, S. Meyers, V.E. Letschert, and J.E. McMahon, 2008: Potential benefits from improved energy efficiency of key electrical products: The case of India. ''Energy Policy'' , '''36(9)''' , 3467–3476, doi:10.1016/j.enpol.2008.05.020. <div id="McNerney--2011"></div> McNerney, J., J. Doyne Farmer, and J.E. Trancik, 2011: Historical costs of coal-fired electricity and implications for the future. ''Energy Policy'' , '''39(6)''' , 3042–3054, doi:10.1016/j.enpol.2011.01.037. <div id="Meckling--2019"></div> Meckling, J., 2019: A New Path for U.S. Climate Politics: Choosing Policies That Mobilize Business for Decarbonization. ''Ann. Am. Acad. Pol. Soc. Sci.'' , '''685(1)''' , 82–95, doi:10.1177/0002716219862515. <div id="Meckling--2019"></div> Meckling, J. and J. Nahm, 2019: The politics of technology bans: Industrial policy competition and green goals for the auto industry. ''Energy Policy'' , '''126''' , 470–479, doi:10.1016/j.enpol.2018.11.031. <div id="Meckling--2015"></div> Meckling, J., N. Kelsey, E. Biber, and J. Zysman, 2015: Winning coalitions for climate policy: Green industrial policy builds support for carbon regulation. ''Science'' , '''349(6253)''' , 1170–1171, doi:10.1126/science.aab1336. <div id="Meckling--2017"></div> Meckling, J., T. Sterner, and G. Wagner, 2017: Policy sequencing toward decarbonization. ''Nat. Energy'' , '''2(12)''' , 918–922, doi:10.1038/s41560-017-0025-8. <div id="Meckling--2009"></div> Meckling, J.O. and G.Y. Chung, 2009: Sectoral approaches for a post-2012 climate regime: A taxonomy. ''Clim. Policy'' , '''9(6)''' , 652–668, doi:10.3763/cpol.2009.0629. <div id="Melissen--2012"></div> Melissen, F. and H. Reinders, 2012: A reflection on the Dutch Sustainable Public Procurement Programme. ''J. Integr. Environ. Sci.'' , '''9(1)''' , 27–36, doi:10. 1080/1943815X.2012.658815. <div id="Mendonça--2018"></div> Mendonça, H.L., T.D.L. van Aduard de Macedo-Soares, and M.V. de A. Fonseca, 2018: Working towards a framework based on mission-oriented practices for assessing renewable energy innovation policies. ''J. Clean. Prod.'' , '''193''' , 709–719, doi:10.1016/j.jclepro.2018.05.064. <div id="Meng--2021"></div> Meng, J., R. Way, E. Verdolini, L. Diaz Anadon, and L. Anadon, 2021: Comparing expert elicitation and model-based probabilistic technology cost forecasts for the energy transition. ''Proc. Natl. Acad. Sci.'' , '''118(27)''' , e1917165118, doi:10.1073/pnas.1917165118. <div id="Mercure--2018"></div> Mercure, J.-F. et al., 2018: Macroeconomic impact of stranded fossil fuel assets. ''Nat. Clim. Chang.'' , '''8(7)''' , 588–593, doi:10.1038/s41558-018-0182-1. <div id="Mercure--2016"></div> Mercure, J.F. et al., 2016: ''Policy-induced energy technological innovation and finance for low-carbon economic growth: Deliverable D2 study on the macroeconomics of energy and climate policies'' . European Union, Brussels, Belgium, 78 pp. <div id="Mian--2020"></div> Mian, A., L. Straub, and A. Sufi, 2020: ''Indebted Demand'' . National Bureau of Economic Research, Cambridge, MA, USA, 70 pp. <div id="Michaelowa--2019"></div> Michaelowa, A., I. Shishlov, and D. Brescia, 2019: Evolution of international carbon markets: Lessons for the Paris Agreement. ''Wiley Interdiscip. Rev. Clim. Chang.'' , '''10(6)''' , doi:10.1002/wcc.613. <div id="Mignon--2016"></div> Mignon, I. and A. Bergek, 2016: System-and actor-level challenges for diffusion of renewable electricity technologies: An international comparison. ''J. Clean. Prod.'' , '''128''' , 105–115. https://doi.org/10.1016/j.jclepro.2015.09.048. <div id="Milojevic-Dupont--2021"></div> Milojevic-Dupont, N. and F. Creutzig, 2021: Machine learning for geographically differentiated climate change mitigation in urban areas. ''Sustain. Cities Soc.'' , '''64''' , 102526, doi:10.1016/j.scs.2020.102526. <div id="Miremadi--2018"></div> Miremadi, I., Y. Saboohi, and S. Jacobsson, 2018: Assessing the performance of energy innovation systems: Towards an established set of indicators. ''Energy Res. Soc. Sci.'' , '''40''' , 159–176, doi:10.1016/j.erss.2018.01.002. <div id="Mission Innovation--2019"></div> [[#Mission%20Innovation--2019|Mission Innovation, 2019]] : ''Collaborative Models for International Co-operation in Clean-energy Research and Innovation'' . Mission Innovation, Published Online, 23 pp. [http://mission-innovation.net/wp-content/uploads/2019/09/AJR-Paper-on-Multilateral-Collaboration-models_FINAL.pdf http://mission-innovation.net/wp-content/uploads/2019/09/AJR-Paper-on-Multilateral-Collaboration-m odels_FINAL.pdf] . <div id="Mitcham--2003"></div> Mitcham, C., 2003: Co-responsibility for research integrity. ''Sci. Eng. Ethics'' , '''9(2)''' , 273–290, doi:10.1007/s11948-003-0014-0. <div id="Mockshell--2019"></div> Mockshell, J. and M.E.J. Villarino, 2019: Agroecological Intensification: Potential and Limitations to Achieving Food Security and Sustainability. In: ''Encyclopedia of Food Security and Sustainability'' ,[Ferranti, P., Berry, E. and Anderson, J. (eds)]. Elsevier Inc, Amsterdam, Netherlands, pp. 64–70. <div id="Mohammadi--2020"></div> Mohammadi, A., B. Khoshnevisan, G. Venkatesh, and S. Eskandari, 2020: A critical review on advancement and challenges of biochar application in paddy fields: Environmental and life cycle cost analysis. ''Processes'' , '''8(10)''' , doi:10.3390/pr8101275. <div id="Moldalieva--2020"></div> Moldalieva, J. and J. Heathershaw, 2020: Playing the “Game” of Transparency and Accountability: Non-elite Politics in Kyrgyzstan’s Natural Resource Governance. ''Post-Soviet Aff.'' , '''36(2)''' , 171–187, doi:10.1080/1060586X.2020.1721213. <div id="Moon--2014"></div> Moon, S.G., S. Bae, and M.-G. Jeong, 2014: Corporate Sustainability and Economic Performance: an Empirical Analysis of a Voluntary Environmental Program in the USA. ''Bus. Strateg. Environ.'' , '''23(8)''' , 534–546, doi:10.1002/bse.1800. <div id="Mormina--2019"></div> Mormina, M., 2019: Science, Technology and Innovation as Social Goods for Development: Rethinking Research Capacity Building from Sen’s Capabilities Approach. ''Sci. Eng. Ethics'' , '''25(3)''' , 671–692, doi:10.1007/s11948-018-0037-1. <div id="Mowery--1979"></div> Mowery, D. and N. Rosenberg, 1979: The influence of market demand upon innovation: A critical review of some recent empirical studies. ''Res. Policy'' , '''8(2)''' , 102–153, doi:10.1016/0048-7333 '''(79)''' 90019-2. <div id="Mukherjee--2020"></div> Mukherjee, P.K., E. Gibbs, A. Walia, and C. Taylor, 2020: Staying cool: The development of India’s pioneering energy efficiency policy for chillers. ''WIREs Energy Environ.'' , '''9(4)''' , doi:10.1002/wene.372. <div id="Mulgan--2012"></div> Mulgan, G., 2012: The Theoretical Foundations of Social Innovation. In: ''Social Innovation'' [Nicholls, A. and A. Murdock, (eds.)], Palgrave Macmillan, London, UK, pp. 33–65. <div id="Munene--2018"></div> Munene, M.B., Å.G. Swartling, and F. Thomalla, 2018: Adaptive governance as a catalyst for transforming the relationship between development and disaster risk through the Sendai Framework? ''Int. J. Disaster Risk Reduct.'' , '''28''' , 653–663, doi:10.1016/j.ijdrr.2018.01.021. <div id="Murphy--2015"></div> Murphy, K., G.A. Kirkman, S. Seres, and E. Haites, 2015: Technology transfer in the CDM: an updated analysis. ''Clim. Policy'' , '''15(1)''' , 127–145, doi:10.1080/14693062.2013.812719. <div id="Murphy--2003"></div> Murphy, L.M. and P.L. Edwards, 2003: ''Bridging the Valley of Death: Transitioning from Public to Private Sector Financing'' . National Renewable Energy Laboratory (NREL), Golden, CO, USA 58 pp. <div id="Myslikova--2020"></div> Myslikova, Z. and K.S. Gallagher, 2020: Mission Innovation is mission critical. ''Nat. Energy'' , '''5(10)''' , 732–734, doi:10.1038/s41560-020-00694-5. <div id="Nagy--2013"></div> Nagy, B., J.D. Farmer, Q.M. Bui, and J.E. Trancik, 2013: Statistical Basis for Predicting Technological Progress. ''PLoS One'' , '''8(2)''' , e52669, doi:10.1371/journal.pone.0052669. <div id="Nahm--2014"></div> Nahm, J. and E.S. Steinfeld, 2014: Scale-up Nation: China’s Specialization in Innovative Manufacturing. ''World Dev.'' ,54, doi:10.1016/j.worlddev. 2013.09.003. <div id="Nanda--2016"></div> Nanda, R., K. Younge, and L. Fleming, 2016: Economic Value Creation in Mobile Applications. In: ''The Changing Frontier'' [Jaffe, A.B. and B.F. Jones, (eds.)], University of Chicago Press, Chicago, USA, pp. 233–286. <div id="Napp--2017"></div> Napp, T. et al., 2017: Exploring the Feasibility of Low-Carbon Scenarios Using Historical Energy Transitions Analysis. ''Energies'' , '''10(1)''' , 116, doi:10.3390/en10010116. <div id="Narayanamurti--2016"></div> Narayanamurti, V. and T. Odumosu, 2016: ''Cycles of Invention and Discovery: Rethinking the endless frontier'' . [Narayanamurti, V. and T. Odumosu, (eds.)]. Harvard University Press, Cambridge, MA, USA, 176 pp. <div id="Narayanamurti--2009"></div> Narayanamurti, V., L.D. Anadon, and A.D. [[#Sagar--2009|Sagar, 2009]] : Transforming Energy Innovation. ''Issues Sci. Technol.'' , '''XXIV(1)''' , doi:https://issues.org/narayanamurti/. <div id="Narita--2017"></div> Narita, D. and U.J. Wagner, 2017: Strategic uncertainty, indeterminacy, and the formation of international environmental agreements. ''Oxf. Econ. Pap.'' , '''69(2)''' , 432–452, doi:10.1093/oep/gpx001. <div id="National Science Board--2018"></div> [[#National%20Science%20Board--2018|National Science Board, 2018]] : ''Research and Development – Research Trends and Comparisons'' . National Science Board, USA, 108 pp. Published Online: [https://www.nsf.gov/statistics/2018/nsb20181/assets/1038/research-and-development-u-s-trends-and-international-comparisons.pdf https://www.nsf.gov/statistics/2018/nsb20181/assets/1038/research-and-development-u-s-trends-and-international- comparisons.pdf] . <div id="Nawaz--2020"></div> Nawaz, A. et al., 2020: An Intelligent Integrated Approach for Efficient Demand Side Management With Forecaster and Advanced Metering Infrastructure Frameworks in Smart Grid. ''IEEE Access'' , '''8''' , 132551–132581, doi:10.1109/ACCESS.2020.3007095. <div id="Negro--2012"></div> Negro, S.O., F. Alkemade, and M.P. Hekkert, 2012: Why does renewable energy diffuse so slowly? A review of innovation system problems. ''Renew. Sustain. Energy Rev.'' , '''16(6)''' , 3836–3846, doi:10.1016/j.rser.2012.03.043. <div id="Neij--2006"></div> Neij, L. and K. Åstrand, 2006: Outcome indicators for the evaluation of energy policy instruments and technical change. ''Energy Policy'' , '''34(17)''' , 2662–2676, doi:10.1016/j.enpol.2005.03.012. <div id="Nelson--1993"></div> Nelson, R., 1993: ''National Innovation Systems: A Comparative Analysis'' . Oxford University Press, Oxford, UK, 552 pp. <div id="Nelson--1966"></div> Nelson, R. and E. Phelps, 1966: Investment in Humans, Technology Diffusion and Economic Growth. ''Am. Econ. Rev.'' , '''56(1/2)''' , 69–75. <div id="Nelson--1996"></div> Nelson, R. and R. Mazzoleni, 1996: Economic Theories About the Costs and Benefits of Patents. In: ''Intellectual Property Rights and'' ''the Dissemination of Research Tools in Molecular Biology: Summary of a Workshop Held at the National Academy of Sciences, February'' ''15–16'' '', 1996.'' National Research Council, The National Academies Press, Washington D.C, USA, pp. 17–27. <div id="Nemet--2006"></div> Nemet, G.F., 2006: Beyond the learning curve: Factors influencing cost reductions in photovoltaics. ''Energy Policy'' , '''34(17)''' , 3218–3232, doi:10.1016/j.enpol.2005.06.020. <div id="Nemet--2009a"></div> Nemet, G.F., 2009a: Interim monitoring of cost dynamics for publicly supported energy technologies. ''Energy Policy'' , '''37(3)''' , 825–835, doi:10.1016/j.enpol. 2008.10.031. <div id="Nemet--2009b"></div> Nemet, G.F., 2009b: Demand-pull, technology-push, and government-led incentives for non-incremental technical change. ''Res. Policy'' , '''38(5)''' , 700–709, doi:10.1016/j.respol.2009.01.004. <div id="Nemet--2010"></div> Nemet, G.F., 2010: Robust incentives and the design of a climate change governance regime. ''Energy Policy'' , '''38(11)''' , 7216–7225, doi:10.1016/j.enpol.2010.07.052. <div id="Nemet--2012"></div> Nemet, G.F., 2012: Inter-technology knowledge spillovers for energy technologies. ''Energy Econ.'' , '''34(5)''' , doi:10.1016/j.eneco.2012.06.002. <div id="Nemet--2013"></div> Nemet, G.F., 2013: Technological change and climate change policy. In: ''Encyclopedia of Energy, Natural Resource and Environmental Economics'' [Shogren, J., (ed.)], Elsevier, Amsterdam, the Netherlands, pp. 107–116. <div id="Nemet--2019"></div> Nemet, G.F., 2019: ''How Solar Became Cheap'' . Routledge, London, UK and New York, NY, USA, 14–18 pp. <div id="Nemet--2013"></div> Nemet, G.F., P. Braden, and E. Cubero, 2013: ''Credibility, Ambition, and Discretion in Long-term U.S. Energy Policy Targets from 1973 to 2011'' . University of Wisconsin-Madison La Follette School of Public Affairs, Working Paper 2013-007, Madison, WI, USA, 29 pp. <div id="Nemet--2017"></div> Nemet, G.F., M. Jakob, J.C. Steckel, and O. Edenhofer, 2017: Addressing policy credibility problems for low-carbon investment. ''Glob. Environ. Chang.'' , '''42''' , 47–57, doi:10.1016/j.gloenvcha.2016.12.004. <div id="Nemet--2018"></div> Nemet, G.F., V. Zipperer, and M. Kraus, 2018: The valley of death, the technology pork barrel, and public support for large demonstration projects. ''Energy Policy'' , '''119''' , 154–167, doi:10.1016/j.enpol.2018.04.008. <div id="Newell--2013"></div> Newell, P. and D. Mulvaney, 2013: The political economy of the ‘just transition.’ ''Geogr. J.'' , '''179(2)''' , 132–140, doi:10.1111/geoj.12008. <div id="Newell--2020"></div> Newell, P. and A. Simms, 2020: How Did We Do That? Histories and Political Economies of Rapid and Just Transitions. ''New Polit. Econ.'' , '''26(6)''' , 1–16, doi:10.1080/13563467.2020.1810216. <div id="Newell--1999"></div> Newell, R.G., A.B. Jaffe, and R.N. Stavins, 1999: The Induced Innovation Hypothesis and Energy-Saving Technological Change. ''Q. J. Econ.'' , '''114(3)''' , 941–975, doi:10.1162/003355399556188. <div id="Newman--2015"></div> Newman, C., J. Rand, T. Talbot, and F. Tarp, 2015: Technology transfers, foreign investment and productivity spillovers. ''Eur. Econ. Rev.'' , '''76''' , 168–187, doi:10.1016/j.euroecorev.2015.02.005. <div id="Nicholls--2013"></div> Nicholls, C., and M. Alteri, 2013: Agroecología y Cambio Climático Metodologías para evaluar la resiliencia socio-ecológica en comunidades rurales. FAO, Lima, Peru, 99 pp. <div id="Nicholls--2018"></div> Nicholls, C., and M. Altieri, 2018: Pathways for the amplification of agroecology. ''Agroecol. Sustain. Food Syst.'' , '''42(10)''' , 1170–1193, doi:10. 1080/21683565.2018.1499578. <div id="Nikas--2017"></div> Nikas, A. et al., 2017: Managing stakeholder knowledge for the evaluation of innovation systems in the face of climate change. ''J. Knowl. Manag.'' , '''21(5)''' , 1013–1034, doi:10.1108/JKM-01-2017-0006. <div id="Nikas--2018"></div> Nikas, A., H. Doukas, and L. Martínez López, 2018: A group decision making tool for assessing climate policy risks against multiple criteria. ''Heliyon'' , '''4(3)''' , e00588, doi:10.1016/j.heliyon.2018.e00588. <div id="Nikas--2020"></div> Nikas, A., H. Neofytou, A. Karamaneas, K. Koasidis, and J. Psarras, 2020: Sustainable and socially just transition to a post-lignite era in Greece: A multi-level perspective. ''Energy Sources, Part B: Economics, Planning, and Policy,'' '''15(''' '''10–12''' ''')''' , 513–544, doi:10.1080/15567249.2020.1769773. <div id="Nilsson--2016"></div> Nilsson, M., D. Griggs, and M. Visbeck, 2016: Policy: Map the interactions between Sustainable Development Goals. ''Nature'' , '''534(7607)''' , 320–322, doi:10.1038/534320a. <div id="Noailly--2012"></div> Noailly, J., 2012: Improving the energy efficiency of buildings: The impact of environmental policy on technological innovation. ''Energy Econ.'' , '''34(3)''' , 795–806, doi:10.1016/j.eneco.2011.07.015. <div id="Noailly--2015"></div> Noailly, J. and R. Smeets, 2015: Directing technical change from fossil-fuel to renewable energy innovation: An application using firm-level patent data. ''J. Environ. Econ. Manage.'' , '''72''' , 15–37, doi:10.1016/j.jeem.2015.03.004. <div id="Nordhaus--2011"></div> Nordhaus, W., 2011: Designing a friendly space for technological change to slow global warming. ''Energy Econ.'' , '''33(4)''' , 665–673, doi:10.1016/j.eneco.2010.08.005. <div id="Nordhaus--2014"></div> Nordhaus, W.D., 2014: The Perils of the Learning Model for Modeling Endogenous Technological Change. ''Energy J.'' , '''35(1)''' , doi:10.5547/01956574.35.1.1. <div id="North--1991"></div> North, D.C., 1991: Institutions. ''J. Econ. Perspect.'' , '''5(1)''' , 97–112. doi: 10.1257/jep.5.1.97. <div id="Nygaard--2015"></div> Nygaard, I. and U.E. Hansen, 2015: The conceptual and practical challenges to technology categorisation in the preparation of technology needs assessments. ''Clim. Change'' , '''131(3)''' , 371–385, doi:10.1007/s10584-015-1367-5. <div id="NYSERDA--2020"></div> [[#NYSERDA--2020|NYSERDA, 2020]] : ''Innovation & Research Demonstration Project Impact Evaluation'' . NYSERDA, Albany, NY, USA, 41pp. [https://www.nyserda.ny.gov/-/media/Files/Publications/PPSER/Program-Evaluation/2020-Innovation-Research-Impact-Evaluation-Final-Report.pdf https://www.nyserda.ny.gov/-/ media/Files/Publications/PPSER/Program-Evaluation/2020-Innovation-Research-Impact-Evaluation-Fi nal-Report.pdf] . <div id="Obama--2017"></div> Obama, B., 2017: The irreversible momentum of clean energy. ''Science'' , '''355(6321)''' , 126–129, doi:10.1126/science.aam6284. <div id="Oberthür--2021"></div> Oberthür, S., G. Khandekar, and T. Wyns, 2021: Global governance for the decarbonization of energy-intensive industries: Great potential underexploited. ''Earth Syst. Gov.'' , '''8''' , 100072, doi:10.1016/j.esg.2020.100072. <div id="Ockwell--2016"></div> Ockwell, D. and R. Byrne, 2016: Improving technology transfer through national systems of innovation: Climate relevant innovation-system builders (CRIBs). ''Clim. Policy'' , '''16(7)''' , 836–854, doi:10.1080/14693062.2015.1052958. <div id="Ockwell--2015"></div> Ockwell, D., A. Sagar, and H. de Coninck, 2015: Collaborative research and development (R&D) for climate technology transfer and uptake in developing countries: Towards a needs driven approach. ''Clim. Change'' , '''131(3)''' , 401–415, doi:10.1007/s10584-014-1123-2. <div id="Ockwell--2018"></div> Ockwell, D., R. Byrne, U.E. Hansen, J. Haselip, and I. Nygaard, 2018: The uptake and diffusion of solar power in Africa: Socio-cultural and political insights on a rapidly emerging socio-technical transition. ''Energy Res. Soc. Sci.'' , '''44''' , 122–129, doi:10.1016/j.erss.2018.04.033. <div id="Ockwell--2012"></div> Ockwell, D.G. and A. Mallett, 2012: ''Low-carbon Technology Transfer'' . [Ockwell, D.G. and A. Mallett, (eds.)]. Routledge, London, UK and New York, NY, USA, 403 pp. <div id="OECD--2006"></div> [[#OECD--2006|OECD, 2006]] : ''Innovation in energy technology: Comparing national innovation systems at sectoral level'' . OECD, Paris, France, 318pp. [https://doi.org/10.1787/9789264014084-en https://doi.org/10.1787/9 789264014084-en] . <div id="OECD--2011a"></div> [[#OECD--2011a|OECD, 2011a]] : ''Tools for delivering green growth'' . OECD, Paris, France, 29pp. [https://www.oecd.org/greengrowth/48012326.pdf https://www.oecd.org/greengrowt h/48012326.pdf] . <div id="OECD--2011b"></div> [[#OECD--2011b|OECD, 2011b]] : ''Industrial Biotechnology and Climate Change: Opportunities and Challenges'' . OECD, Paris, France, 41pp. [http://www.oecd.org/science/emerging-tech/49024032.pdf http://www.oecd.org/science/emerging-tec h/49024032.pdf] . <div id="OECD--2015a"></div> [[#OECD--2015a|OECD, 2015a]] : ''Frascati Manual 2015: Guidelines for Collecting and Reporting Data on Research and Experimental Development'' . OECD, Paris, France, 400 pp. <div id="OECD--2015b"></div> [[#OECD--2015b|OECD, 2015b]] : ''Green Investment Banks'' . OECD, Paris, France, 1–20 pp. <div id="OECD--2017"></div> [[#OECD--2017|OECD, 2017]] : ''OECD Digital Economy Outlook 201'' ''7'' . OECD, Paris, France, 324pp. <div id="OECD--2020"></div> [[#OECD--2020|]] [[#OECD--2020|OECD, 2020]] : ''The effects of R&D tax incentives and their role in the innovation policy mix'' . OECD, Paris, France, 96 pp. <div id="OECD--2020"></div> OECD, and ITF, 2020: ''Good to go? Assessing the environmental performance of new mobility'' . OECD, Paris, France, 87 pp. [https://www.itf-oecd.org/sites/default/files/docs/environmental-performance-new-mobility.pdf https://www.itf-oecd.org/sites/default/files/docs/environmental-performance-ne w-mobility.pdf] . <div id="Oh--2020"></div> Oh, C., 2020: Contestations over the financial linkages between the UNFCCC’s Technology and Financial Mechanism: Using the lens of institutional interaction. ''Int. Environ. Agreements Polit. Law Econ.'' , '''20(3)''' , 559–575, doi:10.1007/s10784-020-09474-8. <div id="Ohl--1941"></div> Ohl, R.S., 1941: Light-sensitive electric device. ''United States Pat. Off. 2402662'' ,.United States Patent Office, USA, 14pp. <div id="Ohl--1946"></div> Ohl, R.S., 1946: Light-sensitive electric device. United States Patent Office 2402662, 14pp. <div id="Olawuyi--2018"></div> Olawuyi, D.S., 2018: From technology transfer to technology absorption: Addressing climate technology gaps in Africa. ''J. Energy Nat. Resour. Law'' , '''36(1)''' , 61–84, doi:10.1080/02646811.2017.1379667. <div id="Oldenziel--2016"></div> Oldenziel, R., M. Emanuel, A.A. Albert de la Bruheze, and F. Veraart, 2016: ''Cycling Cities: The European Experience: Hundred Years of Policy and Practice'' . Foundation for the History of Technology, Eindhoven, Netherlands, 256 pp. <div id="Olson--1982"></div> Olson, M., 1982: ''The Rise and Decline of Nations: Economic Growth, Stagflation and Social Rigidities'' . Yale University Press, New Haven, CT, USA and London, UK, 276 pp. <div id="Olsson--2002"></div> Olsson, O. and B.S. Frey, 2002: Entrepreneurship as recombinant growth. ''Small Bus. Econ.'' , '''19''' , 69–80, doi:10.1023/A:1016261420372. <div id="Ordonez--2021"></div> Ordonez, J.A., M. Jakob, J.C. Steckel, and A. Fünfgeld, 2021: Coal, power and coal-powered politics in Indonesia. ''Environ. Sci. Policy'' , '''123''' , 44–57, doi:10.1016/j.envsci.2021.05.007. <div id="Osongo--2017"></div> Osongo, E. and J. Schot, 2017: Inclusive Innovation and Rapid Sociotechnical Transitions: The Case of Mobile Money in Kenya. ''SPRU Work. Pap. Ser.'' , '''March''' '''23, 2017''' . SWPS 2017-07, doi:10.2139/ssrn.2940184. <div id="Ostrom--2010"></div> Ostrom, E., 2010: Beyond Markets and States: Polycentric Governance of Complex Economic Systems. ''Am. Econ. Rev.'' , '''100(3)''' , 641–672, doi:10.1257/aer.100.3.641. <div id="Otto--2020"></div> Otto, I.M. et al., 2020: Social tipping dynamics for stabilizing Earth’s climate by 2050. ''Proc. Natl. Acad. Sci.'' , '''117(5)''' , 2354–2365, doi:10.1073/pnas.1900577117. <div id="Pandey--2021"></div> Pandey, N., H. de Coninck, and A.D. Sagar, 2021: Beyond technology transfer: Innovation cooperation to advance sustainable development in developing countries. ''WIREs Energy Environ.'' , '''11(2)''' , 1-25. doi:10.1002/wene.422. <div id="Parida--2019"></div> Parida, V., D. Sjödin, and W. Reim, 2019: Reviewing Literature on Digitalization, Business Model Innovation, and Sustainable Industry: Past Achievements and Future Promises. ''Sustainability'' , '''11(2)''' , 391, doi:10.3390/su11020391. <div id="Paroussos--2017"></div> Paroussos, L., F. Panagiotis, V. Zoi, and F. Kostas, 2017: ''A technical case study on R&D and technology spillovers of clean energy technologies'' . European Commission, Brussels, 87 pp. [https://ec.europa.eu/energy/sites/ener/files/documents/case_study_3_technical_analysis_spillovers.pdf https://ec.europa.eu/energy/sites/ener/files/documents/case_study_3_technical_analysis_ spillovers.pdf] . <div id="Paroussos--2020"></div> Paroussos, L., K. Fragkiadakis, and P. Fragkos, 2020: Macro-economic analysis of green growth policies: The role of finance and technical progress in Italian green growth. ''Clim. Change'' , '''160(4)''' , 591–608, doi:10.1007/s10584-019-02543-1. <div id="Pascual--2017"></div> Pascual, U. et al., 2017: Valuing nature’s contributions to people: The IPBES approach. ''Curr. Opin. Environ. Sustain.'' , '''26''' – '''27''' , 7–16, doi:10.1016/j.cosust.2016.12.006. <div id="Patt--2015"></div> Patt, A., 2015: ''Transforming energy: Solving climate change with technology policy'' . Cambridge University Press, New York, NY, USA, 360 pp. <div id="Patt--2018"></div> Patt, A. and J. Lilliestam, 2018: The Case against Carbon Prices. ''Joule'' , '''2(12)''' , doi:10.1016/j.joule.2018.11.018. <div id="Patt--2019"></div> Patt, A., D. Aplyn, P. Weyrich, and O. van Vliet, 2019: Availability of private charging infrastructure influences readiness to buy electric cars. ''Transp. Res. Part A Policy Pract.'' , '''125''' , 1–7, doi:10.1016/J.TRA.2019.05.004. <div id="Pearson--2012"></div> Pearson, P.J.G. and T.J. Foxon, 2012: A low carbon industrial revolution? Insights and challenges from past technological and economic transformations. ''Energy Policy'' , '''50''' , 117–127, doi:10.1016/J.ENPOL.2012.07.061. <div id="Pegels--2020"></div> Pegels, A. and T. Altenburg, 2020: Latecomer development in a “greening” world: Introduction to the Special Issue. ''World Dev.'' , '''135''' , 105084, doi:10.1016/j.worlddev.2020.105084. <div id="Pellicer-Sifres--2018"></div> Pellicer-Sifres, V., S. Belda-Miquel, I. Cuesta-Fernandez, and A. Boni, 2018: Learning, transformative action, and grassroots innovation: Insights from the Spanish energy cooperative Som Energia. ''Energy Res. Soc. Sci.'' , '''42''' , 100–111, doi:10.1016/J.ERSS.2018.03.001. <div id="Peñasco--2021"></div> Peñasco, C., L.D. Anadón, and E. Verdolini, 2021: Systematic review of the outcomes and trade-offs of ten types of decarbonization policy instruments. ''Nat. Clim. Chang.'' , '''11(3)''' , 274–274, doi:10.1038/s41558-021-00992-0. <div id="Peng--2018"></div> Peng, Y. and X. Bai, 2018: Experimenting towards a low-carbon city: Policy evolution and nested structure of innovation. ''J. Clean. Prod.'' , '''174''' , 201–212, doi:10.1016/J.JCLEPRO.2017.10.116. <div id="Peng--2019"></div> Peng, Y., Y. Wei, and X. Bai, 2019: Scaling urban sustainability experiments: Contextualization as an innovation. ''J. Clean. Prod.'' , '''227''' , 302–312, doi:10.1016/J.JCLEPRO.2019.04.061. <div id="Pengue--2018"></div> Pengue, W. et al., 2018: ‘Eco-agri-food systems’: Today’s realities and tomorrow’s challenges. In: ''TEEB for Agriculture & Food: Scientific and Economic Foundations Report'' , UN Environment, Geneva, pp. 57–109. <div id="Pereirinha--2018"></div> Pereirinha, P.G. et al., 2018: Main trends and challenges in road transportation electrification. ''Transp. Res. Procedia'' , '''33''' , 235–242, doi:10.1016/j.trpro.2018.10.096. <div id="Persoon--2020"></div> Persoon, P.G.J., R.N.A. Bekkers, and F. Alkemade, 2020: The science base of renewables. ''Technol. Forecast. Soc. Change'' , '''158''' , 120121, doi:10.1016/j.techfore.2020.120121. <div id="PIANOo Expertisecentrum--2020"></div> [[#PIANOo%20Expertisecentrum--2020|PIANOo Expertisecentrum, 2020]] : Biobased Inkopen. ''Dutch Minist. Econ. Aff. Clim. Policy'' ,. [https://www.pianoo.nl/en https://ww w.pianoo.nl/en] . <div id="Pless--2019"></div> Pless, J., 2019: Are “Complementary Policies” Substitutes? Evidence from R&D Subsidies in the UK. ''SSRN Electron. J.'' , 57, doi:10.2139/ssrn.3379256. <div id="Popp--2002"></div> Popp, D., 2002: Induced Innovation and Energy Prices. ''Am. Econ. Rev.'' , '''92(1)''' , 160–180, doi:10.1257/000282802760015658. <div id="Popp--2004"></div> Popp, D., 2004: ENTICE: Endogenous technological change in the DICE model of global warming. ''J. Environ. Econ. Manage.'' , '''48(1)''' , 742–768, doi:10.1016/j.jeem.2003.09.002. <div id="Popp--2010"></div> Popp, D., 2010: Innovation and climate policy. ''Annu. Rev. Resour. Econ.'' , '''2''' ,275-298 doi:10.1146/annurev.resource.012809.103929. <div id="Popp--2011"></div> Popp, D., 2011: International Technology Transfer, Climate Change, and the Clean Development Mechanism. ''Rev. Environ. Econ. Policy'' , '''5(1)''' , 131–152, doi:10.1093/reep/req018. <div id="Popp--2019"></div> Popp, D., 2019: Environmental Policy and Innovation: A Decade of Research. ''Int. Rev. Environ. Resour. Econ.'' , '''13(''' '''3–4''' ''')''' , 265–337, doi:10.1561/101.00000111. <div id="Popp--2012"></div> Popp, D. and R. Newell, 2012: Where does energy R&D come from? Examining crowding out from energy R&D. ''Energy Econ.'' , '''34(4)''' , 980–991, doi:10.1016/j.eneco.2011.07.001. <div id="Porter--1995"></div> Porter, M. and C. Van der Linde, 1995: Green and competitive: Ending the stalemate. ''Harvard Business Review, September 1995, 1-15.'' Pörtner, H.O. et al., 2021: ''Scientific outcome of the IPBES-IPCC co-sponsored workshop on biodiversity and climate change'' . IPBES secretariat, Bonn, Germany, 256pp. doi:10.5281/zenodo.5101125. <div id="Pretty--2011"></div> Pretty, J., C. Toulmin, and S. Williams, 2011: Sustainable intensification in African agriculture. ''Int. J. Agric. Sustain.'' , '''9(1)''' , doi:10.3763/ijas.2010.0583. <div id="Probst--2020"></div> Probst, B., V. Anatolitis, A. Kontoleon, and L.D. Anadón, 2020: The short-term costs of local content requirements in the Indian solar auctions. ''Nat. Energy'' , '''5(11)''' , 842–850, doi:10.1038/s41560-020-0677-7. <div id="Probst--2021"></div> Probst, B., L. Westermann, L.D. Anadón, and A. Kontoleon, 2021: Leveraging private investment to expand renewable power generation: Evidence on financial additionality and productivity gains from Uganda. ''World Dev.'' , '''140''' , 105347, doi:10.1016/j.worlddev.2020.105347. <div id="Qiu--2012"></div> Qiu, Y. and L.D. Anadon, 2012: The price of wind power in China during its expansion: Technology adoption, learning-by-doing, economies of scale, and manufacturing localization. ''Energy Econ.'' , '''34(3)''' , 772–785, doi:10.1016/j.eneco.2011.06.008. <div id="Quirapas--2020"></div> Quirapas, M.A.J.R. and A. Taeihagh, 2020: Ocean renewable energy development in Southeast Asia: Opportunities, risks and unintended consequences. ''Renew. Sustain. Energy Rev.'' , '''137''' (C), 110403, doi:10.1016/j.rser.2020.110403. <div id="Quitzow--2015"></div> Quitzow, R., 2015: Dynamics of a policy-driven market: The co-evolution of technological innovation systems for solar photovoltaics in China and Germany. ''Environ. Innov. Soc. Transitions'' , '''17''' , 126–148, doi:10.1016/j.eist.2014.12.002. <div id="Rahwan--2019"></div> Rahwan, I. et al., 2019: Machine behaviour. ''Nature'' , '''568(7753)''' , 477–486, doi:10.1038/s41586-019-1138-y. <div id="Ramos-Mejía--2018"></div> Ramos-Mejía, M., M.-L. Franco-Garcia, and J.M. Jauregui-Becker, 2018: Sustainability transitions in the developing world: Challenges of socio-technical transformations unfolding in contexts of poverty. ''Environ. Sci. Policy'' , '''84''' , 217–223, doi:10.1016/j.envsci.2017.03.010. <div id="Ravetz--1999"></div> Ravetz, J. and S. Funtowicz, 1999: Editorial. ''Futures'' , '''31(7)''' , 641–646, doi:https://doi.org/10.1016/S0016-3287(99)00023-3. <div id="Reder--1965"></div> Reder, M.W. and J.R. Hicks, 1965: The Theory of Wages. ''Economica'' , '''32(125)''' , 88, doi:10.2307/2552450. <div id="Reichman--2009"></div> Reichman, J., 2009: Compulsory Licensing of Patented Pharmaceutical Inventions: Evaluating the Options. ''J. Law, Med. Ethics'' , '''37(2)''' , 247–263. 10.1111/j.1748-720X.2009.00369.x <div id="Reitzig--2007"></div> Reitzig, M., J. Henkel, and C. Heath, 2007: On sharks, trolls, and their patent prey – Unrealistic damage awards and firms’ strategies of “being infringed.” ''Res. Policy'' , '''36(1)''' , 134–154, doi:10.1016/j.respol.2006.10.003. <div id="Remer--2003"></div> Remer, D.S. and F.B. Mattos, 2003: Cost and scale-up factors, international inflation indexes and location factors. ''Int. J. Prod. Econ.'' , '''84(1)''' , 1–16, doi:10.1016/S0925-5273 '''(02)''' 00374-2. <div id="Repo--2019"></div> Repo, P. and K. Matschoss, 2019: Social Innovation for Sustainability Challenges. ''Sustainability'' , '''12(1)''' , 319, doi:10.3390/su12010319. <div id="RESA--2001"></div> [[#RESA--2001|RESA, 2001]] : Act on granting priority to renewable energy sources (Renewable Energy Sources Act, Germany, 2000). ''Sol. Energy'' , '''70(6)''' , 489–504, doi:10.1016/S0038-092X '''(00)''' 00144-4. <div id="Reynolds--2017"></div> Reynolds, S., M. Gabriel, and C. Heales, 2017: ''Social innovation policy in Europe: Where next?'' D5.3: Annual State of the Union Report – Part 1, Social Innovation Community, European Commission, Brussels, Belgium, 37 pp. [https://www.siceurope.eu/sites/default/files/field/attachment/social_innovation_policy_in_europe_-_where_next.pdf https://www.siceurope.eu/sites/default/files/field/attachment/social_ innovation_policy_in_europe_-_where_next.pdf] (Accessed July 22, 2021). <div id="Riahi--2017"></div> Riahi, K. et al., 2017: The Shared Socioeconomic Pathways and their energy, land use, and greenhouse gas emissions implications: An overview. ''Glob. Environ. Chang.'' , '''42''' , 153–168, doi:10.1016/j.gloenvcha.2016.05.009. <div id="Riekstin--2014"></div> Riekstin, A.C., S. James, A. Kansal, J. Liu, and E. Peterson, 2014: No More Electrical Infrastructure: Towards Fuel Cell Powered Data Centers. ''SIGOPS Oper. Syst. Rev.'' , '''48(1)''' , 39–43, doi:10.1145/2626401.2626410. <div id="Rijke--2013"></div> Rijke, J., M. Farrelly, R. Brown, and C. Zevenbergen, 2013: Configuring transformative governance to enhance resilient urban water systems. ''Environ. Sci. Policy'' , '''25''' , 62–72, doi:10.1016/j.envsci.2012.09.012. <div id="Rikap--2020"></div> Rikap, C., 2020: Amazon: A story of accumulation through intellectual rentiership and predation. ''Compet. Change'' , '''26(3-4)''' , 436-466 doi:10.1177/1024529420932418. <div id="Rivera-Batiz--1991"></div> Rivera-Batiz, L.A. and P.M. Romer, 1991: Economic Integration and Endogenous Growth. ''Q. J. Econ.'' , '''106(2)''' , 531, doi:10.2307/2937946. <div id="Roberts--2018"></div> Roberts, C. et al., 2018: The politics of accelerating low-carbon transitions: Towards a new research agenda. ''Energy Res. Soc. Sci.'' , '''44''' (February), 304–311, doi:10.1016/j.erss.2018.06.001. <div id="Rogers--2010"></div> Rogers, D. and V. Tsirkunov, 2010: Costs and benefits of Early Warning Systems. In: ''Global Assessment Report on Disaster Risk Reduction'' , International Stragey for Disaster Reduction (ISDR) – The World Bank, Geneva, pp. 1–17. <div id="Rogers--2003"></div> Rogers, E.M., 2003: ''Diffusion of Innovations'' . 5th ed. Free Press, New York, NY, USA, 576 pp. <div id="Rogge--2016"></div> Rogge, K.S. and K. Reichardt, 2016: Policy mixes for sustainability transitions: An extended concept and framework for analysis. ''Res. Policy'' , '''45(8)''' , 1620–1635, doi:10.1016/j.respol.2016.04.004. <div id="Rogge--2017"></div> Rogge, K.S., F. Kern, and M. Howlett, 2017: Conceptual and empirical advances in analysing policy mixes for energy transitions. ''Energy Res. Soc. Sci.'' , '''33''' , 1–10, doi:10.1016/j.erss.2017.09.025. <div id="Rogge--2020"></div> Rogge, K.S., B. Pfluger, and F.W. Geels, 2020: Transformative policy mixes in socio-technical scenarios: The case of the low-carbon transition of the German electricity system '''(''' '''2010–2050''' ''')''' . ''Technol. Forecast. Soc. Change'' , '''151''' , 119259, doi:10.1016/J.TECHFORE.2018.04.002. <div id="Rolnick--2021"></div> Rolnick, D. et al., 2021: Tackling Climate Change with Machine Learning. ''ACM Cumput. Surv.'' , '''1(1)''' , 95. doi: 10.1145/3485128. <div id="Romer--1990"></div> Romer, P.M., 1990: Endogenous Technological Change. ''J. Polit. Econ.'' , '''98(5, Part 2)''' , S71–S102, doi:10.1086/261725. <div id="Rosenberg--1998"></div> Rosenberg, N., 1998: Uncertainty and Technological Change. In: ''The Economic Impact of Knowledge'' [Neef, D., G.. Siesfeld, and J. Cefola, (eds.)], Butterworth-Heinemann, Woburn, MA, USA, pp. 17–34. <div id="Rotz--2019"></div> Rotz, S. et al., 2019: The Politics of Digital Agricultural Technologies: A Preliminary review. ''Sociol. Ruralis'' , '''59(2)''' , 203–229, doi:10.1111/SORU.12233. <div id="Roy--2018"></div> Roy, J., P. Tschakert, H. Waisman, S. Abdul Halim, P. Antwi-Agyei, P. Dasgupta, B. Hayward, M. Kanninen, D. Liverman, C. Okereke, P.F. Pinho, K. Riahi, and A.G. Suarez Rodriguez, 2018: Sustainable Development, Poverty Eradication and Reducing Inequalities. In: ''Global Warming of 1.5°C an IPCC special report on the impacts of global warming of 1.5°C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of strengthening the global response to the threat of climate change'' , [Masson-Delmotte, V., P. Zhai, H.-O. Pörtner, D. Roberts, J. Skea, P.R. Shukla, A. Pirani, W. Moufouma-Okia, C. Péan, R. Pidcock, S. Connors, J.B.R. Matthews, Y. Chen, X. Zhou, M.I. Gomis, E. Lonnoy, T. Maycock, M. Tignor, and T. Waterfield (eds.)]. Cambridge University Press, Cambridge, UK and New York, NY, USA, pp. 445–538. <div id="Rubin--2015"></div> Rubin, E.S., I.M.L. Azevedo, P. Jaramillo, and S. Yeh, 2015: A review of learning rates for electricity supply technologies. ''Energy Policy'' , '''86''' , 198–218, doi:10.1016/j.enpol.2015.06.011. <div id="Rubio--2017"></div> Rubio, S.J., 2017: Sharing R&D investments in breakthrough technologies to control climate change. ''Oxford Econ. Pap. Ser.'' , '''69(2, SI)''' , 496–521, doi:10.1093/oep/gpw067. <div id="Ruby--2015"></div> Ruby, T.M., 2015: Innovation-enabling policy and regime transformation towards increased energy efficiency: The case of the circulator pump industry in Europe. ''J. Clean. Prod.'' , '''103''' , 574–585, doi:10.1016/j.jclepro.2015.02.017. <div id="Rust--2020"></div> Rust, N.A. et al., 2020: How to transition to reduced-meat diets that benefit people and the planet. ''Sci. Total Environ.'' , '''718''' , 137208, doi:10.1016/j.scitotenv.2020.137208. <div id="Sachs--2019"></div> Sachs, J.D. et al., 2019: Six transformations to achieve the Sustainable Development Goals. ''Nat. Sustain. 2019 29'' , '''2(9)''' , 805–814, doi:10.1038/s41893-019-0352-9. <div id="Sadras--2020"></div> Sadras, V.O., 2020: Agricultural technology is unavoidable, directional, combinatory, disruptive, unpredictable and has unintended consequences. ''Outlook Agric.'' , '''49(4)''' , 293–297, doi:10.1177/0030727020960493. <div id="Safarzyńska--2010"></div> Safarzyńska, K. and J.C.J.M. van den Bergh, 2010: Evolutionary models in economics: A survey of methods and building blocks. ''J. Evol. Econ.'' , '''20(3)''' , 329–373, doi:10.1007/s00191-009-0153-9. <div id="Sagar--2009"></div> Sagar, A., 2009: ''Technology development and transfer to meet climate and developmental challenges'' . Background note UNDESA Background Paper. Delhi High Level Conference on Climate Change, UN Division for Sustainable Development (UN DESA), New Delhi, India, 22–23 Oct. 2009 32 pp. <div id="Sagar--2014"></div> Sagar, A. and A. Majumdar, 2014: ''Facilitating a sustainability transition in developing countries: Proposal for a global Advanced Research Project Agency for Sustainable Development'' . Rio+20 Working Paper No.3, UN Division for Sustainable Development (UN DESA), Published Online, 30 pp. [https://sustainabledevelopment.un.org/content/documents/1498Sagar%20Majumdar.pdf https://sustainabledevelopment.un.org/content/documents/1498Sagar] Majumdar.pdf . <div id="Sagar--2002"></div> Sagar, A.D. and J.P. Holdren, 2002: Assessing the global energy innovation system: Some key issues. ''Energy Policy'' , '''30(6)''' , 465–469, doi:10.1016/S0301-4215 '''(01)''' 00117-3. <div id="Sagar--2009"></div> Sagar, A.D., C. Bremner, and M. Grubb, 2009: Climate Innovation Centres: A partnership approach to meeting energy and climate challenges. ''Nat. Resour. Forum'' , '''33(4)''' , 274–284, doi:10.1111/j.1477-8947.2009.001252.x. <div id="Samadi--2018"></div> Samadi, S., 2018: The experience curve theory and its application in the field of electricity generation technologies – A literature review. ''Renew. Sustain. Energy Rev.'' , '''82''' , 2346–2364, doi:10.1016/j.rser.2017.08.077. <div id="Samuelson--1965"></div> Samuelson, P.A., 1965: A Theory of Induced Innovation along Kennedy-Weisacker Lines. ''Rev. Econ. Stat.'' , '''47(4)''' , 343, doi:10.2307/1927763. <div id="Sanchez--2017"></div> Sanchez, D.L. and V. Sivaram, 2017: Saving innovative climate and energy research: Four recommendations for Mission Innovation. ''Energy Res. Soc. Sci.'' , '''29''' , 123–126, doi:10.1016/j.erss.2017.05.022. <div id="Sanni--2016"></div> Sanni, M. et al., 2016: Climate change and intellectual property rights in Africa: Environmental necessity-economic opportunity. ''African J. Sci. Technol. Innov. Dev.'' , '''8(''' '''5–6''' ''')''' , 377–385, doi:10.1080/20421338.2016.1219482. <div id="Sanyal--2009"></div> Sanyal, P. and L.R. Cohen, 2009: Powering Progress: Restructuring, Competition, and R&D in the U.S. Electric Utility Industry. ''Energy J.'' , '''30(2)''' , 41–79. <div id="Sarker--2020"></div> Sarker, M.N.I., M. Wu, G.M. Alam, and R.C. Shouse, 2020: Livelihood resilience of riverine island dwellers in the face of natural disasters: Empirical evidence from Bangladesh. ''Land use policy'' , '''95''' , 104599, doi:10.1016/j.landusepol.2020.104599. <div id="Sarr--2017"></div> Sarr, M. and T. Swanson, 2017: Will Technological Change Save the World? The Rebound Effect in International Transfers of Technology. ''Environ. Resour. Econ.'' , '''66(3)''' , 577–604, doi:10.1007/s10640-016-0093-4. <div id="Sawulski--2020"></div> Sawulski, J. and J. Witajewski-Baltvilks, 2020: Optimal Diversity in Auctions for Renewable Energy Sources under Technological Uncertainty. ''Int. Rev. Environ. Resour. Econ.'' , '''14(''' '''2–3''' ''')''' , 299–347, doi:10.1561/101.00000118. <div id="Schillo--2017"></div> Schillo, R.S.S. and R.M.M. Robinson, 2017: Inclusive Innovation in Developed Countries: The Who, What, Why, and How. ''Technol. Innov. Manag. Rev.'' , '''7''' , 34–46, doi:http://doi.org/10.22215/timreview/1089. <div id="Schindele--2020"></div> Schindele, S. et al., 2020: Implementation of agrophotovoltaics: Techno-economic analysis of the price-performance ratio and its policy implications. ''Appl. Energy'' , '''265''' , 114737, doi:10.1016/j.apenergy.2020.114737. <div id="Schmid--2020"></div> Schmid, N., S. Sewerin, and T.S. Schmidt, 2020: Explaining Advocacy Coalition Change with Policy Feedback. ''Policy Stud. J.'' , '''48(4)''' , 1109–1134, doi:10.1111/psj.12365. <div id="Schmidt--2017"></div> Schmidt, O. et al., 2017: Future cost and performance of water electrolysis: An expert elicitation study. ''Int. J. Hydrog. Energ'' , '''42''' , 30470–30492. [https://doi.org/10.1016/j.ijhydene.2017.10.045 https://doi.org/10.1016/j.ijhyd ene.2017.10.045] <div id="Schmidt--2017"></div> Schmidt, T.S. and S. Sewerin, 2017: Technology as a driver of climate and energy politics. ''Nat. Energy'' , '''2(6)''' , 17084, doi:10.1038/nenergy.2017.84. <div id="Schmidt--2019"></div> Schmidt, T.S. and S. Sewerin, 2019: Measuring the temporal dynamics of policy mixes – An empirical analysis of renewable energy policy mixes’ balance and design features in nine countries. ''Res. Policy'' , '''48(10)''' , 103557, doi:10.1016/j.respol.2018.03.012. <div id="Schot--2018"></div> Schot, J. and L. Kanger, 2018: Deep transitions: Emergence, acceleration, stabilization and directionality. ''Res. Policy'' , '''47(6)''' , 1045–1059, doi:10. 1016/j.respol.2018.03.009. <div id="Scoones--2015"></div> Scoones, I., 2015: ''The Politics of Green Transformations'' . 1st Edition. Routledge, London, UK, 238 pp. <div id="Scotchmer--1990"></div> Scotchmer, S. and J. Green, 1990: Novelty and Disclosure in Patent Law. ''RAND J. Econ.'' , '''21(1)''' , 131, doi:10.2307/2555499. <div id="Seebregts--1998"></div> Seebregts, A. et al., 1998: ''Endogenous Technological Change in Energy Systems Models: Synthesis of Experience with ERIS, MARKAL, and MESSAGE'' . Paul Scherrer Institute, International Institute for Applied Systems Analysis (IIASA), Villigen, Switzerland and Laxenburg, Austria, 29pp., doi:ECN-C-99-025. <div id="Segerberg--2017"></div> Segerberg, A., 2017: Online and Social Media Campaigns For Climate Change Engagement. ''Oxford Res. Encycl. Clim. Sci.'' , doi:10.1093/acrefore/9780190228620.013.398. <div id="Semieniuk--2021"></div> Semieniuk, G., E. Campiglio, J.-F. Mercure, U. Volz, and N.R. Edwards, 2021: Low‐carbon transition risks for finance. ''WIREs Clim. Chang.'' , '''12(1)''' , doi:10.1002/wcc.678. <div id="Sendzimir--2011"></div> Sendzimir, J., C.P. Reij, and P. Magnuszewski, 2011: Rebuilding Resilience in the Sahel: Regreening in the Maradi and Zinder regions of Niger. ''Ecol. Soc.'' , '''16(3)''' , doi:10.5751/ES-04198-160301. <div id="Seres--2009"></div> Seres, S., E. Haites, and K. Murphy, 2009: Analysis of technology transfer in CDM projects: An update. ''Energy Policy'' , '''37(11)''' , 4919–4926, doi:10.1016/j.enpol.2009.06.052. <div id="Serrenho--2019"></div> Serrenho, T. and P. Bertoldi, 2019: ''Smart home and appliances: State of the art'' . 1st ed. [European Commission Joint Research Center, (ed.)]. Publications Office of the European Union, Luxembourg, 1–59 pp. <div id="Seto--2016"></div> Seto, K.C. et al., 2016: Carbon Lock-In: Types, Causes, and Policy Implications. ''Annu. Rev. Environ. Resour.'' , '''41(1)''' , 425–452, doi:10.1146/annurev-environ-110615-085934. <div id="Seyfang--2007"></div> Seyfang, D.G. and D.A. Smith, 2007: Grassroots innovations for sustainable development: Towards a new research and policy agenda. ''Environmental Politics'' , '''16(4)''' , 584–603, doi:10.1080/09644010701419121. <div id="Shapiro--2001"></div> Shapiro, C., 2001: Navigating the Patent Thicket: Cross Licences, Patent Pools and Standard Setting. ''Innov. Policy Econ.'' , '''1''' , 119–150. https://doi.org/ 10.1086/ipe.1.25056143. <div id="Sharpe--2021"></div> Sharpe, S. and T.M. Lenton, 2021: Upward-scaling tipping cascades to meet climate goals: Plausible grounds for hope. ''Clim. Policy'' , '''21(4)''' , 421–433, doi:10.1080/14693062.2020.1870097. <div id="Shiraki--2020"></div> Shiraki, H. and M. Sugiyama, 2020: Back to the basic: Toward improvement of technoeconomic representation in integrated assessment models. ''Clim. Change'' , '''162(1)''' , 13–24, doi:10.1007/s10584-020-02731-4. <div id="Sierzchula--2015"></div> Sierzchula, W. and G. Nemet, 2015: Using patents and prototypes for preliminary evaluation of technology-forcing policies: Lessons from California’s Zero Emission Vehicle regulations. ''Technol. Forecast. Soc. Change'' , '''100''' , 213–224, doi:10.1016/j.techfore.2015.07.003. <div id="Silvestre--2019"></div> Silvestre, B.S.S. and D.M.M. Ţîrcă, 2019: Innovations for sustainable development: Moving toward a sustainable future. ''J. Clean. Prod.'' , '''208''' , 325–332, doi:https://doi.org/10.1016/j.jclepro.2018.09.244. <div id="Singh--2020"></div> Singh, N.P. et al., 2020: Dynamics of socio-economic factors affecting climate vulnerability and technology adoption: Evidence from Jodhpur district of Rajasthan. ''Indian J. Tradit. Knowl.'' , '''19(1)''' , 192–196. <div id="Sivaram--2018a"></div> Sivaram, V., 2018a: ''Digital Decarbonization. Promoting Digital Innovations to Advance Clean Energy Systems'' . Council on Foreign Relations, New York, USA, 138 pp. [https://www.cfr.org/report/digital-decarbonization https://www.cfr.org/report/digital-d ecarbonization] . <div id="Sivaram--2018b"></div> Sivaram, V., 2018b: ''Taming the Sun: Innovations to Harness Solar Energy and Power the Planet'' . MIT Press, Cambridge, MA, USA, 50–52 pp. <div id="Skea--2019"></div> Skea, J., R. van Diemen, M. Hannon, E. Gazis, and A. Rhodes, 2019: ''Energy Innovation for the Twenty-First century: Accelerating the Energy Revolution'' . 1st ed., Edward Elgar Publishing, Cheltenham, UK, 464 pp. <div id="Skelton--2020"></div> Skelton, A.C.H., L. Paroussos, and J.M. Allwood, 2020: Comparing energy and material efficiency rebound effects: An exploration of scenarios in the GEM-E3 macroeconomic model. ''Ecol. Econ.'' , '''173''' , 106544, doi:10.1016/j.ecolecon.2019.106544. <div id="Skene--2020"></div> Skene, K.R., 2020: No goal is an island: The implications of systems theory for the Sustainable Development Goals. ''Environ. Dev. Sustain.'' , '''23''' , 9993–10012 doi:10.1007/s10668-020-01043-y. <div id="Solow--1957"></div> Solow, R.M., 1957: Technical change and the aggregate production function. ''Rev. Econ. Stat.'' , '''39(3)''' , 312–320. doi: https://doi.org/10.2307/1926047. <div id="Somanathan--2014"></div> Somanathan, E. T. Sterner, T. Sugiyama, D. Chimanikire, N.K. Dubash, J. Essandoh-Yeddu, S. Fifita, L. Goulder, A. Jaffe, X. Labandeira, S. Managi, C. Mitchell, J.P. Montero, F. Teng, and T. Zylicz, 2014: National and Sub-national Policies and Institutions. In: ''Climate Change 2014: Mitigation of Climate Change. Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change'' [Edenhofer, O., R. Pichs-Madruga, Y. Sokona, E. Farahani, S. Kadner, K. Seyboth, A. Adler, I. Baum, S. Brunner, P. Eickemeier, B. Kriemann, J. Savolainen, S. Schlömer, C. von Stechow, T. Zwickel and J.C. Minx, (eds.)]. Cambridge University Press, Cambridge, UK and New York, USA, pp. 1141–1205. <div id="Song--2019"></div> Song, Y., T. Yang, and M. Zhang, 2019: Research on the impact of environmental regulation on enterprise technology innovation – an empirical analysis based on Chinese provincial panel data. ''Environ. Sci. Pollut. Res.'' , '''26(21)''' , 21835–21848, doi:10.1007/s11356-019-05532-0. <div id="Sorrell--2007"></div> Sorrell, S., 2007: ''The Rebound Effect: An assessment of the evidence for economy-wide energy savings from improved energy efficiency'' . Energy Research Centre. London, UK,169 pp. <div id="Sorrell--2004"></div> Sorrell, S. et al., 2004: ''The Economics of Energy Efficiency'' . Edward Elgar Publishing, Cheltenham, UK, 360 pp. <div id="Soto Embodas--2019"></div> Soto Embodas, I. et al., 2019: ''The contribution of precision agriculture technologies to farm productivity and the mitigation of greenhouse gas emissions in the EU'' . Joint Research Centre of the European Commission, Luxembourg, 447 pp. <div id="Spence--1981"></div> Spence, A.M., 1981: The Learning Curve and Competition. ''Bell J. Econ.'' , '''12(1)''' , 49, doi:10.2307/3003508. <div id="Stavins--2014"></div> Stavins, R., J. Zou, T. Brewer, M. Conte Grand, M. den Elzen, M. Finus, J. Gupta, N. Höhne, M.-K. Lee, A. Michaelowa, M. Paterson, K. Ramakrishna, G. Wen, J. Wiener, and H. Winkler, 2014: International Cooperation: Agreements and Instruments. In: ''Climate Change 2014: Mitigation of Climate Change. Contribution of Working Group III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change'' [Edenhofer, O., R. Pichs-Madruga, Y. Sokona, E. Farahani, S. Kadner, K. Seyboth, A. Adler, I. Baum, S. Brunner, P. Eickemeier, B. Kriemann, J. Savolainen, S. Schlömer, C. von Stechow, T. Zwickel and J.C. Minx (eds.)]. Cambridge University Press, Cambridge, UK, and New York, NY, USA, pp. 1001–1082. <div id="Steffen--2015"></div> Steffen, W. et al., 2015: Planetary boundaries: Guiding human development on a changing planet. ''Science'' , '''347(6223)''' , doi:10.1126/SCIENCE.1259855. <div id="Steneck--2006"></div> Steneck, N.H., 2006: Fostering integrity in research: Definitions, current knowledge, and future directions. ''Science and Engineering Ethics'' , '''12''' , 53–74.doi: doi: [https://doi.org/10.1007/PL00022268 10.1007/PL00022268] . <div id="Stern--2007"></div> Stern, N., 2007: ''The Economics of Climate Change'' . Cambridge University Press, Cambridge, UK, 692 pp. <div id="Stiglitz--2008"></div> Stiglitz, J.E., 2008: Economic foundations of intellectual property rights. ''Duke Law J.'' , '''57''' '''(6)''' , 1693–1724. <div id="Stilgoe--2013"></div> Stilgoe, J., R. Owen, and P. Macnaghten, 2013: Developing a framework for responsible innovation. ''Res. Policy'' , '''42(9)''' , 1568–1580, doi:10.1016/j.respol.2013.05.008. <div id="Stokes--2016"></div> Stokes, L.C., 2016: Electoral Backlash against Climate Policy: A Natural Experiment on Retrospective Voting and Local Resistance to Public Policy. ''Am. J. Pol. Sci.'' , '''60(4)''' , 958–974, doi:10.1111/ajps.12220. <div id="Stokes--2017"></div> Stokes, L.C. and C. Warshaw, 2017: Renewable energy policy design and framing influence public support in the United States. ''Nat. Energy'' , '''2(8)''' , 17107, doi:10.1038/nenergy.2017.107. <div id="Stokes--2018"></div> Stokes, L.C. and H.L. Breetz, 2018: Politics in the U.S. energy transition: Case studies of solar, wind, biofuels and electric vehicles policy. ''Energy Policy'' , '''113''' , 76-86 doi:10.1016/j.enpol.2017.10.057. <div id="Stoll--2019"></div> Stoll, C., L. Klaaßen, and U. Gallersdörfer, 2019: The Carbon Footprint of Bitcoin. ''Joule'' , '''3(7)''' , 1647–1661, doi:10.1016/j.joule.2019.05.012. <div id="Sue Wing--2006"></div> Sue Wing, I., 2006: Representing induced technological change in models for climate policy analysis. ''Energy Econ.'' , '''28(''' '''5–6''' ''')''' , 539–562, doi:10.1016/j.eneco.2006.05.009. <div id="Sue Wing--2008"></div> Sue Wing, I., 2008: Explaining the declining energy intensity of the U.S. economy. ''Resour. Energy Econ.'' , '''30(1)''' , 21–49, doi:10.1016/j.reseneeco.2007.03.001. <div id="Sundaramoorthy--2017"></div> Sundaramoorthy, S. and A. Walia, 2017: India’s experience in implementing strategic schemes to enhance appliance energy efficiency & futuristic integrated policy approaches to adopt most efficient technologies. Panel: 2. Policy: governance, design, implementation and evaluation challenges, ''ECEEE Summer Study Proceedings'' . European Council for an Energy Efficient Economy, Stockholm, Sweden, pp. 297–284. <div id="Supran--2017"></div> Supran, G. and N. Oreskes, 2017: Assessing ExxonMobil’s climate change communications '''(''' '''1977–2014''' ''')''' . ''Environ. Res. Lett.'' , '''12(8)''' , 084019, doi:10.1088/1748-9326/aa815f. <div id="Surana--2015"></div> Surana, K. and L.D. Anadon, 2015: Public policy and financial resource mobilization for wind energy in developing countries: A comparison of approaches and outcomes in China and India. ''Glob. Environ. Chang.'' , '''35''' , 340–359, doi:10.1016/j.gloenvcha.2015.10.001. <div id="Surana--2020a"></div> Surana, K., A. Singh, and A.D. Sagar, 2020a: Strengthening science, technology, and innovation-based incubators to help achieve Sustainable Development Goals: Lessons from India. ''Technol. Forecast. Soc. Change'' , '''157''' , 120057, doi:10.1016/j.techfore.2020.120057. <div id="Surana--2020b"></div> Surana, K. et al., 2020b: ''Regional Clean Energy Innovation'' . Energy Futures Initiative, Washington DC and University of Maryland Global Sustainability Initiative, Maryland, USA, 122 pp. <div id="Sutherland--2006"></div> Sutherland, R.J., 2006: The Distributional Effects of Direct Regulation: A Case Study of Energy Efficiency Appliance Standards. In: ''The Distributional Effects of Environmental Policy'' [Serret; and P. Johnstone, (eds.)], Edward Elgar Publishing, Cheltenham, UK, pp 171–198. <div id="Suzuki--2015"></div> Suzuki, M., 2015: Identifying roles of international institutions in clean energy technology innovation and diffusion in the developing countries: Matching barriers with roles of the institutions. ''J. Clean. Prod.'' , '''98''' , 229–240, doi:10.1016/j.jclepro.2014.08.070. <div id="Sweerts--2020"></div> Sweerts, B., R.J. Detz, and B. van der Zwaan, 2020: Evaluating the Role of Unit Size in Learning-by-Doing of Energy Technologies. ''Joule'' , '''4(5)''' , 967–970, doi:10.1016/j.joule.2020.03.010. <div id="Swilling--2016"></div> Swilling, M., J. Musango, and J. Wakeford, 2016: Developmental States and Sustainability Transitions: Prospects of a Just Transition in South Africa. ''J. Environ. Policy Plan.'' , '''18(5)''' , 650–672, doi:10.1080/1523908X.2015.1107716. <div id="Tariq--2017"></div> Tariq, A., Y.F. Badir, W. Tariq, and U.S. Bhutta, 2017: Drivers and consequences of green product and process innovation: A systematic review, conceptual framework, and future outlook. ''Technol. Soc.'' , '''51''' , 8–23, doi:10.1016/J.TECHSOC.2017.06.002. <div id="Tassey--2014"></div> Tassey, G., 2014: Competing in Advanced Manufacturing: The Need for Improved Growth Models and Policies. ''J. Econ. Perspect.'' , '''28(1)''' , 27–48, doi:10.1257/jep.28.1.27. <div id="Taylor--2012"></div> Taylor, M.R., 2012: Innovation under cap-and-trade programs. ''Proc. Natl. Acad. Sci.'' , '''109(13)''' , 4804–4809, doi:10.1073/pnas.1113462109. <div id="TEC--2012"></div> [[#TEC--2012|TEC, 2012]] : ''Report on activities and performance of the Technology Executive Committee for 2012'' . UNFCCC, Bonn, Germany, 13 pp. [https://unfccc.int/resource/docs/2012/sb/eng/02.pdf https://unfccc.int/resource/docs/2012 /sb/eng/02.pdf] . <div id="TEC--2015"></div> [[#TEC--2015|TEC, 2015]] : ''TEC Brief #7: Strengthening National Systems of Innovation to Enhance Action on Climate Change'' . UNFCCC, Bonn, Germany, 12 pp. [https://unfccc.int/ttclear/misc_/StaticFiles/gnwoerk_static/TEC_%0Adocuments/5be1bf880cc34d52a4315206d54a711b/60d1580f741a4bc783%0Ada5a00cf64a879.pdfhttps://unfccc.int/ttclear/misc_/StaticFiles/gnwoerk_static/TEC_%0Adocuments/5be1bf880cc34d52a4315206d54a711b/60d1580f741a4bc783%0Ada5a00cf64a879.pdfhttps://unfccc.int/ttclear/misc_/StaticFiles/gnwoerk_static/TEC_%0Adocuments/5be1bf880cc34d52a4315206d54a711b/60d1580f741a4bc783%0Achrome-extension://efaidnbmnnnibpcajpcglclefindmkaj/https://unfccc.int/ttclear/misc_/StaticFiles/gnwoerk_static/TEC_documents/5be1bf880cc34d52a4315206d54a711b/60d1580f741a4bc783da5a00cf64a879.pdf https://unfccc.int/ttclear/misc_/StaticFiles/gnwoerk_static/TEC_ documents/5be1bf880cc34d52a4315206d54a711b/60d1580f741a4bc783 da5a00cf64a879.pdf] . <div id="TEC--2017"></div> [[#TEC--2017|TEC, 2017]] : ''Enhancing financing for the research, development and demonstration of climate technologies'' . UNFCCC, Bonn, Germany, Germany, 26 pp. <div id="TEC--2019"></div> [[#TEC--2019|TEC, 2019]] : ''Rolling Workplan of the Technology Executive Committee for'' ''2019–2022'' . UNFCCC, Bonn, Germany, 13 pp. tic/TEC_Members_doc/ 9ca11435f3d94446a917a01a5d52a64a/20deb28a9b454a978b1 7299aa0bbf64c.pdf (Accessed August 25, 2021). <div id="TEC--2021"></div> [[#TEC--2021|TEC, 2021]] : ''Compilation of good practices and lessons learned on international collaborative research, development and demonstration initiatives of climate technology'' . UNFCCC, Bonn, Germany, 68 pp. <div id="TEEB--2018"></div> [[#TEEB--2018|TEEB, 2018]] : ''TEEB for Agriculture & Food: Scientific and Economic Foundations'' . UN Environment, Geneva, 414 pp. <div id="Thacker--2019"></div> Thacker, S. et al., 2019: Infrastructure for sustainable development. ''Nat. Sustain. 2019 24'' , '''2(4)''' , 324–331, doi:10.1038/s41893-019-0256-8. <div id="Thornton--2017"></div> Thornton, T.F. and C. Comberti, 2017: Synergies and trade-offs between adaptation, mitigation and development. ''Clim. Change'' , '''140(1)''' , 5–18, doi:10.1007/s10584-013-0884-3. <div id="Tigabu--2018"></div> Tigabu, A.D., 2018: Analysing the diffusion and adoption of renewable energy technologies in Africa: The functions of innovation systems perspective. ''African J. Sci. Technol. Innov. Dev.'' , '''10(5)''' , 615–624, doi:10.1080/20421338.2017.1366130. <div id="Tigabu--2015"></div> Tigabu, A.D., F. Berkhout, and P. van Beukering, 2015: Functional evolution and accumulation of technological innovation systems: The case of renewable energy in East Africa. ''Sci. Public Policy'' , '''42(5)''' , 614–631, doi:10.1093/scipol/scu073. <div id="Timilsina--2020"></div> Timilsina, R., 2020: ''Demystifying the Costs of Electricity Generation Technologies'' . World Bank, Washington, USA, 39 pp. <div id="Tittonell--2014"></div> Tittonell, P., 2014: Ecological intensification of agriculture – sustainable by nature. ''Curr. Opin. Environ. Sustain.'' , '''8''' , 53–61, doi:10.1016/j.cosust.2014.08.006. <div id="Toke--2015"></div> Toke, D., 2015: Renewable Energy Auctions and Tenders: How good are they? ''Int. J. Sustain. Energy Plan. Manag.'' , '''8''' , 43–56, doi:https://doi.org/10.5278/ijsepm.2015.8.5. <div id="Tonn--2019"></div> Tonn, B.E. and D. Stiefel, 2019: Anticipating the Unanticipated-Unintended Consequences of Scientific and Technological Purposive Actions. ''World Futur. Rev.'' , '''11(1)''' , 19–50, doi:10.1177/1946756718789413. <div id="Townsend--2019"></div> Townsend, R. et al., 2019: ''Future of Food: Harnessing Digital Technologies to Improve Food System Outcomes'' . International Bank for Reconstruction and Development / The World Bank, Washington D.C, USA, 44 pp. <div id="Trianni--2013"></div> Trianni, A., E. Cagno, and E. Worrell, 2013: Innovation and adoption of energy efficient technologies: An exploratory analysis of Italian primary metal manufacturing SMEs. ''Energy Policy'' , '''61''' , 430–440, doi:10.1016/j.enpol.2013.06.034. <div id="Trutnevyte--2019"></div> Trutnevyte, E. et al., 2019: Societal Transformations in Models for Energy and Climate Policy: The Ambitious Next Step. ''One Earth'' , '''1(4)''' , 423–433, doi:10.1016/j.oneear.2019.12.002. <div id="Tsur--2007"></div> Tsur, Y. and A. Zemel, 2007: Towards endogenous recombinant growth. ''J. Econ. Dyn. Control'' , '''31(11)''' , 3459–3477, doi:10.1016/j.jedc.2006.12.002. <div id="Turner--2020"></div> Turner, R., P. McConney, and I. Monnereau, 2020: Climate Change Adaptation and Extreme Weather in the Small-Scale Fisheries of Dominica. ''Coast. Manag.'' , '''48(5)''' , 436–455, doi:10.1080/08920753.2020.1795970. <div id="Turnheim--2020"></div> Turnheim, B. and B.K. Sovacool, 2020: Exploring the role of failure in socio-technical transitions research. ''Environ. Innov. Soc. Transitions'' , '''37''' , 267–289, doi:10.1016/J.EIST.2020.09.005. <div id="Turnheim--2015"></div> Turnheim, B. et al., 2015: Evaluating sustainability transitions pathways: Bridging analytical approaches to address governance challenges. ''Glob. Environ. Chang.'' , '''35''' , 239–253, doi:10.1016/j.gloenvcha.2015.08.010. <div id="Twomey--2012"></div> Twomey, P., 2012: Rationales for Additional Climate Policy Instruments under a Carbon Price. ''Econ. Labour Relations Rev.'' , '''23(1)''' , 7–31, doi:10.1177/103530461202300102. <div id="Tziva--2020"></div> Tziva, M., S.O. Negro, A. Kalfagianni, and M.P. Hekkert, 2020: Understanding the protein transition: The rise of plant-based meat substitutes. ''Environ. Innov. Soc. Transitions'' , '''35''' , 217–231, doi:10.1016/J.EIST.2019.09.004. <div id="Ugur--2017"></div> Ugur, M. and A. Mitra, 2017: Technology Adoption and Employment in Less Developed Countries: A Mixed-Method Systematic Review. ''World Dev.'' , '''96''' , 1–18, doi:10.1016/j.worlddev.2017.03.015. <div id="Ulsrud--2018"></div> Ulsrud, K., H. Rohracher, and C. Muchunku, 2018: Spatial transfer of innovations: South-South learning on village-scale solar power supply between India and Kenya. ''Energy Policy'' , '''114''' , 89–97, doi:10.1016/j.enpol.2017.11.064. <div id="UNCTAD--2019"></div> [[#UNCTAD--2019|UNCTAD, 2019]] : ''The Impact of Rapid Technological Change on Sustainable Development'' . United Nations Publications, New York, NY, USA, 46 pp. <div id="Unel--2008"></div> Unel, B., 2008: R&D spillovers through trade in a panel of OECD industries. ''J. Int. Trade Econ. Dev.'' , '''17(1)''' , 105–133, doi:10.1080/09638190701728024. <div id="UNEP--2013"></div> UNEP, 2013: ''Assessing Global Land Use: Balancing Consumption with Sustainable Supply. A Report of the Working Group on Land and Soils of the International Resource Panel'' . [Bringezu, S. et al., (eds.)]. UN Environment Programme, Nairobi, Kenya, 132 pp. [https://www.resourcepanel.org/reports/assessing-global-land-use https://www.resourcepanel.org/reports/assessing- global-land-use] . <div id="UNEP--2014"></div> [[#UNEP--2014|UNEP, 2014]] : ''Decoupling 2: Technologies, opportunities and policy options. A Report of the Working Group on Decoupling to the International Resource Panel.'' [Von Weizsäcker, E.U., J. De Larderel, K. Hargroves, C. Hudson, M. Smith, and M. Rodrigues, (eds.)]. UNEP, Nairobi, Kenya, 158 pp. <div id="UNEP--2015"></div> [[#UNEP--2015|UNEP, 2015]] : ''Policy Coherence of the Sustainable Development Goals A Natural Resource Perspective'' . UNEP, Paris, France, 29 pp. <div id="UNEP--2017"></div> UNEP, 2017: ''Assessing global resource use: A systems approach to resource efficiency and pollution reduction'' . [Bringezu, S. et al., (eds.)]. United Nations Environment Programme, Nairobi, Kenya, 99 pp. <div id="UNFCCC--2015"></div> [[#UNFCCC--2015|UNFCCC, 2015]] : ''Paris Agreement'' . United Nations, New York, NY, USA, 16 pp. <div id="UNFCCC--2016"></div> [[#UNFCCC--2016|UNFCCC, 2016]] : ''Report of the Conference of the Parties on its twenty-first session, held in Paris from 30 November to 13 December 2015. FCCC/CP/2015/10/Add.1.'' United UNFCCC, Bonn, Germany, 42 pp. <div id="UNFCCC--2017"></div> [[#UNFCCC--2017|UNFCCC, 2017]] : ''Enhancing financing for the research, development and demonstration of climate technologies'' . UNFCCC, Bonn, Germany, 26 pp. <div id="UNFCCC--2020a"></div> [[#UNFCCC--2020a|UNFCCC, 2020a]] : ''Paris Committee on Capacity-building: Review report on the status and progress of work under the Strategic Plan for Stakeholder Engagement, Communications and Resource Mobilization (June 2019–June 2020)'' . UNFCCC, Bonn, Germany, 13 pp. <div id="UNFCCC--2020b"></div> [[#UNFCCC--2020b|UNFCCC, 2020b]] : ''Workplan of the Paris Committee on Capacity-building for'' ''2021–2024'' . UNFCCC, Bonn, Germany,13 pp. <div id="Unruh--2000"></div> Unruh, G.C., 2000: Understanding carbon lock-in. ''Energy Policy'' , '''28(12)''' , 817–830, doi:10.1016/S0301-4215 '''(00)''' 00070-7. <div id="Unruh--2002"></div> Unruh, G.C., 2002: Escaping carbon lock-in. ''Energy Policy'' , '''30(4)''' , 317–325, doi:10.1016/S0301-4215 '''(01)''' 00098-2. <div id="Upadhyaya--2020"></div> Upadhyaya, P., M.K. Shrivastava, G. Gorti, and S. Fakir, 2020: Capacity building for proportionate climate policy: Lessons from India and South Africa. ''Int. Polit. Sci. Rev.'' , '''0(0)''' , 019251212096388, doi:10.1177/0192512120963883. <div id="Urban--2018"></div> Urban, F., 2018: China’s rise: Challenging the North-South technology transfer paradigm for climate change mitigation and low carbon energy. ''Energy Policy'' , '''113''' (November 2017), 320–330, doi:10.1016/j.enpol.2017.11.007. <div id="US Department of Energy--2011"></div> [[#US%20Department%20of%20Energy--2011|US Department of Energy, 2011]] : ''DOE G 413.3-4A, Technology Readiness Assessment Guide'' . DOE, Washington D.C, USA, 73 pp. [https://www.directives.doe.gov/directives-documents/400-series/0413.3-EGuide-04a https://www.directives.doe.gov/directives-documents/400-series/041 3.3-EGuide-04a] . <div id="US National Academies of Sciences Engineering and Medicine--2017"></div> [[#US%20National%20Academies%20of%20Sciences%20Engineering%20and%20Medicine--2017|US National Academies of Sciences Engineering and Medicine, 2017]] : ''An Assessment of ARPA-E'' . Washington, DC: The National Academies Press. https://doi.org/10.17226/24778. <div id="van Bommel--2021"></div> van Bommel, N. and J.I. Höffken, 2021: Energy justice within, between and beyond European community energy initiatives: A review. ''Energy Res. Soc. Sci.'' , '''79''' , 102157, doi:10.1016/j.erss.2021.102157. <div id="van Bree--2010"></div> van Bree, B., G.P.J. Verbong, and G.J. Kramer, 2010: A multi-level perspective on the introduction of hydrogen and battery-electric vehicles. ''Technol. Forecast. Soc. Change'' , '''77(4)''' , 529–540, doi:10.1016/j.techfore.2009.12.005. <div id="Van Buskirk--2014"></div> Van Buskirk, R.D., C.L.S. Kantner, B.F. Gerke, and S. Chu, 2014: A retrospective investigation of energy efficiency standards: Policies may have accelerated long term declines in appliance costs. ''Environ. Res. Lett.'' , '''9(11)''' , 114010, doi:10.1088/1748-9326/9/11/114010. <div id="van den Bergh--2008"></div> van den Bergh, J.C.J.M., 2008: Optimal diversity: Increasing returns versus recombinant innovation. ''J. Econ. Behav. Organ.'' , '''68(''' '''3–4''' ''')''' , 565–580, doi:10.1016/j.jebo.2008.09.003. <div id="van den Bijgaart--2017"></div> van den Bijgaart, I., 2017: The unilateral implementation of a sustainable growth path with directed technical change. ''Eur. Econ. Rev.'' , '''91''' , 305–327, doi:10.1016/j.euroecorev.2016.10.005. <div id="van der Voorn--2020"></div> van der Voorn, T., Å. Svenfelt, K.E. Björnberg, E. Fauré, and R. Milestad, 2020: Envisioning carbon-free land use futures for Sweden: A scenario study on conflicts and synergies between environmental policy goals. ''Reg. Environ. Chang.'' , '''20(2)''' , 35, doi:10.1007/s10113-020-01618-5. <div id="van Sluisveld--2020"></div> van Sluisveld, M.A.E. et al., 2020: Aligning integrated assessment modelling with socio-technical transition insights: An application to low-carbon energy scenario analysis in Europe. ''Technol. Forecast. Soc. Change'' , '''151''' (October 2017), 119177, doi:10.1016/j.techfore.2017.10.024. <div id="Van Summeren--2021"></div> Van Summeren, L.F.M., A.J. Wieczorek, and G.P.J. Verbong, 2021: The merits of becoming smart: How Flemish and Dutch energy communities mobilise digital technology to enhance their agency in the energy transition. ''Energy Res. Soc. Sci.'' , '''79''' , 102160, doi:10.1016/j.erss.2021.102160. <div id="van Vliet--2010"></div> van Vliet, M., K. Kok, and T. Veldkamp, 2010: Linking stakeholders and modellers in scenario studies: The use of Fuzzy Cognitive Maps as a communication and learning tool. ''Futures'' , '''42(1)''' , 1–14, doi:10.1016/j.futures.2009.08.005. <div id="van Welie--2018"></div> van Welie, M.J. and H.A. Romijn, 2018: NGOs fostering transitions towards sustainable urban sanitation in low-income countries: Insights from Transition Management and Development Studies. ''Environ. Sci. Policy'' , '''84''' , 250–260, doi:10.1016/j.envsci.2017.08.011. <div id="Vasconcellos--2021"></div> Vasconcellos, H.A.S. and L. Caiado Couto, 2021: Estimation of socioeconomic impacts of wind power projects in Brazil’s Northeast region using Interregional Input-Output Analysis. ''Renew. Sustain. Energy Rev.'' , '''149''' , 111376, doi:10.1016/j.rser.2021.111376. <div id="Vassilakopoulou--2021"></div> Vassilakopoulou, P. and E. Hustad, 2021: Bridging Digital Divides: a Literature Review and Research Agenda for Information Systems Research. ''Inf. Syst. Front.'' ,, 1–15, doi:10.1007/s10796-020-10096-3. <div id="Vázquez-Canteli--2019"></div> Vázquez-Canteli, J.R. and Z. Nagy, 2019: Reinforcement learning for demand response: A review of algorithms and modeling techniques. ''Appl. Energy'' , '''235''' , 1072–1089, doi:10.1016/j.apenergy.2018.11.002. <div id="Veefkind--2012"></div> Veefkind, V., J. Hurtado-Albir, S. Angelucci, K. Karachalios, and N. Thumm, 2012: A new EPO classification scheme for climate change mitigation technologies. ''World Pat. Inf.'' , '''34(2)''' , 106–111, doi:10.1016/j.wpi.2011.12.004. <div id="Verdolini--2011"></div> Verdolini, E. and M. Galeotti, 2011: At home and abroad: An empirical analysis of innovation and diffusion in energy technologies. ''J. Environ. Econ. Manage.'' , '''61(2)''' , 119–134, doi:10.1016/j.jeem.2010.08.004. <div id="Verdolini--2017"></div> Verdolini, E. and V. Bosetti, 2017: Environmental Policy and the International Diffusion of Cleaner Energy Technologies. ''Environ. Resour. Econ.'' , '''66(3)''' , 497–536, doi:10.1007/s10640-016-0090-7. <div id="Verdolini--2018"></div> Verdolini, E., L.D. Anadón, E. Baker, V. Bosetti, and L. Aleluia Reis, 2018: The Future Prospects of Energy Technologies: Insights from Expert Elicitations. ''Rev. Environ. Econ. Policy'' , '''12(1)''' , 133–153, doi:10.1093/reep/rex028. <div id="Verma--2020"></div> Verma, P. et al., 2020: ''Digitalization: Enabling the new phase of energy efficiency'' . Group of Experts on Energy Efficiency Seventh session Geneva, 22 and 25 September 2020 Item 5 of the Annotated provisional agenda – Regulatory and policy dialogue addressing barriers to improve energy efficiency (GEEE-7/2020/INF.3), [https://unece.org/sites/default/files/2020-12/GEEE-7.2020.INF_.3.pdf https://unece.org/sites/default/files/2020-12/GEEE-7.2 020.INF_.3.pdf] . <div id="Veugelers--2012"></div> Veugelers, R., 2012: Which policy instruments to induce clean innovating? ''Res. Policy'' , '''41(10)''' , 1770–1778, doi:10.1016/j.respol.2012.06.012. <div id="Victor--2018"></div> Victor, D.G., 2018: Digitalization: An Equal Opportunity Wave of Energy Innovation. In: ''Digital Decarbonization Promoting Digital Innovations to Advance Clean Energy Systems'' [Sivaram, V., (ed.)], Council on Foreign Relations Press, New York, USA, pp. 25–32. <div id="Victor--2019"></div> Victor, D.G., F.W. Geels, and S. Sharpe, 2019: ''Accelerating the Low Carbon Transition: The Case for Stronger, More Targeted and Coordinated International Action.'' Commissioned by the UK Department for Business, Energy & Industrial Strategy; Supported by the Energy Transitions Commission.Brookings Institute, London, UK and San Diego, USA, 138 pp. <div id="Vogel--2020"></div> Vogel, B., D. Henstra, and G. McBean, 2020: Sub-national government efforts to activate and motivate local climate change adaptation: Nova Scotia, Canada. ''Environ. Dev. Sustain.'' , '''22(2)''' , 1633–1653, doi:10.1007/s10668-018-0242-8. <div id="Voss--2006"></div> Voss, J.-P., D. Bauknecht, and R. Kemp, 2006: ''Reflexive governance for sustainable development'' . Edward Elgar Publishing, Cheltenham, UK, 457 pp. <div id="Voyant--2017"></div> Voyant, C. et al., 2017: Machine learning methods for solar radiation forecasting: A review. ''Renew. Energy'' , '''105''' , 569–582, doi:10.1016/j.renene.2016.12.095. <div id="Vranken--2017"></div> Vranken, H., 2017: Sustainability of bitcoin and blockchains. ''Curr. Opin. Environ. Sustain.'' , '''28''' , 1–9, doi:10.1016/j.cosust.2017.04.011. <div id="Wahlroos--2017"></div> Wahlroos, M., M. Pärssinen, J. Manner, and S. Syri, 2017: Utilizing data center waste heat in district heating – Impacts on energy efficiency and prospects for low-temperature district heating networks. ''Energy'' , '''140''' , 1228–1238, doi:10.1016/j.energy.2017.08.078. <div id="Wahlroos--2018"></div> Wahlroos, M., M. Pärssinen, S. Rinne, S. Syri, and J. Manner, 2018: Future views on waste heat utilization – Case of data centers in Northern Europe. ''Renew. Sustain. Energy Rev.'' , '''82''' , 1749–1764, doi:10.1016/j.rser.2017.10.058. <div id="Waiswa--2019"></div> Waiswa, P. et al., 2019: Using research priority-setting to guide bridging the implementation gap in countries – a case study of the Uganda newborn research priorities in the SDG era. ''Heal. Res. Policy Syst.'' , '''17(1)''' , 54, doi:10.1186/s12961-019-0459-5. <div id="Wallerstein--1993"></div> Wallerstein, M., M. Mogee, R. Schoen, and P. David, 1993: Intellectual property institutions and the panda’s thumb: Patents, copyrights, and trade secrets in economic theory and history. In: ''Global Dimensions of Intellectual Property Rights in Science and Technology'' [Wallerstein, M., M. Mogee, and R. Schoen, (eds.)], National Academies Press, Washington DC, USA, pp. 19–62. <div id="Walsh--2020"></div> Walsh, P.P.P., E. Murphy, and D. Horan, 2020: The role of science, technology and innovation in the UN 2030 agenda. ''Technol. Forecast. Soc. Change'' , '''154''' , 119957, doi:10.1016/J.TECHFORE.2020.119957. <div id="Wang--2017"></div> Wang, F., J. Yu, P. Yang, L. Miao, and B. Ye, 2017: Analysis of the Barriers to Widespread Adoption of Electric Vehicles in Shenzhen China. ''Sustainability'' , '''9(4)''' , 522, doi:10.3390/su9040522. <div id="Wang--2018"></div> Wang, J., Y.-N. Lee, and J.P. Walsh, 2018: Funding model and creativity in science: Competitive versus block funding and status contingency effects. ''Res. Policy'' , '''47(6)''' , 1070–1083, doi:10.1016/j.respol.2018.03.014. <div id="Wang--2016"></div> Wang, X., H. Cai, and H.K. Florig, 2016: Energy-saving implications from supply chain improvement: An exploratory study on China’s consumer goods retail system. ''Energy Policy'' , '''95''' , 411–420, doi:https://doi.org/10.1016/j.enpol.2016.04.044. <div id="Wang--2017"></div> Wang, Z., X. Wang, and D. Guo, 2017: Policy implications of the purchasing intentions towards energy-efficient appliances among China’s urban residents: Do subsidies work? ''Energy Policy'' , '''102''' , 430–439, doi:10.1016/j.enpol.2016.12.049. <div id="Watanabe--2000"></div> Watanabe, C., K. Wakabayashi, and T. Miyazawa, 2000: Industrial dynamism and the creation of a “virtuous cycle” between R&D, market growth and price reduction. ''Technovation'' , '''20(6)''' , 299–312, doi:10.1016/S0166-4972 '''(99)''' 00146-7. <div id="Watkins--2015"></div> Watkins, A., T. Papaioannou, J. Mugwagwa, and D. Kale, 2015: National innovation systems and the intermediary role of industry associations in building institutional capacities for innovation in developing countries: A critical review of the literature. ''Res. Policy'' , '''44(8)''' , 1407–1418, doi:10.1016/j.respol.2015.05.004. <div id="Way--2019"></div> Way, R., F. Lafond, F. Lillo, V. Panchenko, and J.D. Farmer, 2019: Wright meets Markowitz: How standard portfolio theory changes when assets are technologies following experience curves. ''J. Econ. Dyn. Control'' , '''101''' , 211–238, doi:10.1016/j.jedc.2018.10.006. <div id="Weber--2012"></div> Weber, K.M. and H. Rohracher, 2012: Legitimizing research, technology and innovation policies for transformative change. ''Res. Policy'' , '''41(6)''' , 1037–1047, doi:10.1016/j.respol.2011.10.015. <div id="Weber--2017"></div> Weber, K.M. and B. Truffer, 2017: Moving innovation systems research to the next level: Towards an integrative agenda. ''Oxford Rev. Econ. Policy'' , '''33(1)''' , 101–121, doi:10.1093/oxrep/grx002. <div id="Wei--2017"></div> Wei, M., S.J. Smith, and M.D. Sohn, 2017: Non-constant learning rates in retrospective experience curve analyses and their correlation to deployment programs. ''Energy Policy'' , '''107''' , 356–369, doi:10.1016/j.enpol.2017.04.035. <div id="Weingärtner--2020"></div> Weingärtner, L., T. Pforr, and E. Wilkinson, 2020: ''The Evidence Base on Anticipatory Action'' . World Food Programme, Rome, 48 pp. [https://www.wfp.org/publications/evidence-base-anticipatory-action https://www.wfp.org/publications/evidence-base-antic ipatory-action] . <div id="Weiss--2013"></div> Weiss, C. and W.B. Bonvillian, 2013: Legacy sectors: Barriers to global innovation in agriculture and energy. ''Technol. Anal. Strateg. Manag.'' , '''25(10)''' , 1189–1208, doi:10.1080/09537325.2013.843658. <div id="Weiss--2010"></div> Weiss, M., M. Junginger, M.K. Patel, and K. Blok, 2010: A review of experience curve analyses for energy demand technologies. ''Technol. Forecast. Soc. Change'' , '''77(3)''' , 411–428, doi:10.1016/j.techfore.2009.10.009. <div id="Weitzman--1998"></div> Weitzman, M.L., 1998: Recombinant Growth. ''Q. J. Econ.'' , '''113(2)''' , 331–360, doi:10.1162/003355398555595. <div id="Wesche--2019"></div> Wesche, J.P., S.O. Negro, E. Dütschke, R.P.J.M. Raven, and M.P. Hekkert, 2019: Configurational innovation systems – Explaining the slow German heat transition. ''Energy Res. Soc. Sci.'' , '''52''' , 99–113, doi:10.1016/j.erss.2018.12.015. <div id="Wesseling--2017"></div> Wesseling, J.H. and A. Van der Vooren, 2017: Lock-in of mature innovation systems: The transformation toward clean concrete in the Netherlands. ''J. Clean. Prod.'' , '''155''' , 114–124, doi:https://doi.org/10.1016/j.jclepro.2016.08.115. <div id="Wesseling--2015"></div> Wesseling, J.H., J.C.M. Farla, and M.P. Hekkert, 2015: Exploring car manufacturers’ responses to technology-forcing regulation: The case of California’s ZEV mandate. ''Environ. Innov. Soc. Transitions'' , '''16''' , 87–105, doi:10.1016/j.eist.2015.03.001. <div id="Westerhoff--2018"></div> Westerhoff, L., S.R.J. Sheppard, D. Mathew Iype, S. Cote, and J. Salter, 2018: Social mobilization on climate change and energy: An evaluation of research projects in British Columbia, Canada. ''Energy Res. Soc. Sci.'' , '''46''' , 368–380, doi:10.1016/J.ERSS.2018.07.022. <div id="Westley--2013"></div> Westley, F.R. et al., 2013: A Theory of Transformative Agency in Linked Social-Ecological Systems. ''Ecol. Soc.'' , '''18(3)''' , art27, doi:10.5751/ES-05072-180327. <div id="Weyant--2011"></div> Weyant, J.P., 2011: Accelerating the development and diffusion of new energy technologies: Beyond the “valley of death.” ''Energy Econ.'' , '''33(4)''' , 674–682, doi:10.1016/j.eneco.2010.08.008. <div id="Weyrauch--2016"></div> Weyrauch, T. and C. Herstatt, 2016: What is frugal innovation? Three defining criteria. ''J. Frugal Innov. 2016 21'' , '''2(1)''' , 1–17, doi:10.1186/S40669-016-0005-Y. <div id="Wezel--2015"></div> Wezel, A., G. Soboksa, S. McClelland, F. Delespesse, and A. Boissau, 2015: The blurred boundaries of ecological, sustainable, and agroecological intensification: A review. ''Agron. Sustain. Dev.'' , '''35(4)''' , 1283–1295, doi:10.1007/s13593-015-0333-y. <div id="Wezel--2020"></div> Wezel, A. et al., 2020: Agroecological principles and elements and their implications for transitioning to sustainable food systems. A review. ''Agron. Sustain. Dev.'' , '''40(6)''' , 40, doi:10.1007/s13593-020-00646-z. <div id="Whittaker--2020"></div> Whittaker, D.H., T. Sturgeon, T. Okita, and T. Zhu, 2020: ''Compressed Development'' . Oxford University Press, Oxford, UK, 304pp. <div id="WHO--2002"></div> [[#WHO--2002|WHO, 2002]] : ''The implications of DOHA Declaration on the TRIPS Agreement and Public Health'' . Document Number WHO/EDM/PAR/2002.3. World Health Organization, Geneva, Switzerland, 56pp. [https://apps.who.int/iris/handle/10665/67345 https://apps.who.int/iris/han dle/10665/67345] . <div id="Wieczorek--2012"></div> Wieczorek, A.J. and M.P. Hekkert, 2012: Systemic instruments for systemic innovation problems: A framework for policy makers and innovation scholars. ''Sci. Public Policy'' , '''39(1)''' , 74–87, doi:10.1093/scipol/scr008. <div id="Wieczorek--2013"></div> Wieczorek, A.J. et al., 2013: A review of the European offshore wind innovation system. ''Renew. Sustain. Energy Rev.'' , '''26''' , 294–306, doi:10.1016/j.rser.2013.05.045. <div id="Wiel--2006"></div> Wiel, S., C. Egan, and M. delta Cava, 2006: Energy efficiency standards and labels provide a solid foundation for economic growth, climate change mitigation, and regional trade. ''Energy Sustain. Dev.'' , '''10(3)''' , 54–63, doi:10.1016/S0973-0826 '''(08)''' 60544-X. <div id="Wigand--2016"></div> Wigand, F. et al., 2016: ''Auctions for Renewable Energy Support: Effective use and efficient implementation options.'' Aures Research Project Report D4.2 1–46 pp. [https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e5aa83001d&appId=PPGMS https://ec.europa.eu/research/participants/documents/down loadPublic?documentIds=080166e5aa83001 d&appId=PPGMS] . <div id="Williams--2020"></div> Williams, D.S., S. Rosendo, O. Sadasing, and L. Celliers, 2020: Identifying local governance capacity needs for implementing climate change adaptation in Mauritius. ''Clim. Policy'' , '''20(5)''' , 548–562, doi:10.1080/14693062.2020.1745743. <div id="Wilson--2012"></div> Wilson, C., 2012: Up-scaling, formative phases, and learning in the historical diffusion of energy technologies. ''Energy Policy'' , '''50''' , 81–94, doi:10.1016/j.enpol.2012.04.077. <div id="Wilson--2013"></div> Wilson, C. and A. Grubler, 2013: Energy Technology Innovation. In: ''Energy Technology Innovation: Learning from Historical Successes and Failures'' [Grubler, A. and C. Wilson, (eds.)], Cambridge University Press, Cambridge, UK, pp. 3–10. <div id="Wilson--2020"></div> Wilson, C. et al., 2020: Granular technologies to accelerate decarbonization. ''Science'' , '''368(6486)''' , 36–39, doi:10.1126/science.aaz8060. <div id="Winther--2018"></div> Winther, T., K. Ulsrud, and A. Saini, 2018: Solar powered electricity access: Implications for women’s empowerment in rural Kenya. ''Energy Res. Soc. Sci.'' , '''44''' , 61–74, doi:https://doi.org/10.1016/j.erss.2018.04.017. <div id="WIPO--2008"></div> [[#WIPO--2008|WIPO, 2008]] : ''WIPO Intellectual Property Handbook: Policy, Law and Use'' . 2nd ed. World Intellectual Property Organization (WIPO), New York, NY, USA, 488 pp. <div id="WIPO--2021"></div> [[#WIPO--2021|WIPO, 2021]] : WIPO Member States. https://www.wipo.int/members/en/ (Accessed November 1, 2021). <div id="Witajewski-Baltvilks--2015"></div> Witajewski-Baltvilks, J., E. Verdolini, and M. Tavoni, 2015: Bending the learning curve. ''Energy Econ.'' , '''52''' , S86–S99, doi:10.1016/j.eneco.2015.09.007. <div id="Witajewski-Baltvilks--2017"></div> Witajewski-Baltvilks, J., E. Verdolini, and M. Tavoni, 2017: Induced technological change and energy efficiency improvements. ''Energy Econ.'' , '''68''' , 17–32, doi:10.1016/j.eneco.2017.10.032. <div id="World Bank--2014"></div> [[#World%20Bank--2014|World Bank, 2014]] : ''World Development Indicators 2014'' . The World Bank, Washington, D.C., USA115pp. <div id="WTO--1994"></div> [[#WTO--1994|WTO, 1994]] : ''Trade-Related Aspects of Intellectual Property Rights, Annex 1C of the Marrakesh Agreement Establishing the World Trade Organization'' . World Trade Organization (WTO), Marrakesh, Morocco, pp 319-351. <div id="WTO--2020"></div> [[#WTO--2020|WTO, 2020]] : ''Compulsory licensing of pharmaceuticals and TRIPS'' . [https://www.wto.org/english/tratop_e/trips_e/public_health_faq_e.htm https://www.wto.org/english/tratop_e/trips_e/public_he alth_faq_e.htm] . <div id="Yan--2017"></div> Yan, Z., K. Du, Z. Yang, and M. Deng, 2017: Convergence or divergence? Understanding the global development trend of low-carbon technologies. ''Energy Policy'' , '''109''' , 499–509, doi:10.1016/j.enpol.2017.07.024. <div id="Yi--2013"></div> Yi, H., 2013: Clean energy policies and green jobs: An evaluation of green jobs in U.S. metropolitan areas. ''Energy Policy'' , '''56''' , 644–652, doi:10.1016/j.enpol.2013.01.034. <div id="Yi--2015"></div> Yi, H. and Y. Liu, 2015: Green economy in China: Regional variations and policy drivers. ''Glob. Environ. Chang.'' , '''31''' , 11–19, doi:10.1016/j.gloenvcha.2014.12.001. <div id="Youn--2015"></div> Youn, H., D. Strumsky, L.M.A. Bettencourt, and J. Lobo, 2015: Invention as a combinatorial process: Evidence from US patents. ''J. R. Soc. Interface'' , '''12(106)''' , 20150272, doi:10.1098/rsif.2015.0272. <div id="Young--1993"></div> Young, A., 1993: Invention and Bounded Learning by Doing. ''J. Polit. Econ.'' , '''101(3)''' , 443–472, doi:10.1086/261882. <div id="Yu--2011"></div> Yu, C.F., W. van Sark, and E.A. Alsema, 2011: Unraveling the photovoltaic technology learning curve by incorporation of input price changes and scale effects. ''Renew. Sustain. Energy Rev.'' , '''15(1)''' , 324–337, doi:10.1016/j.rser.2010.09.001. <div id="Zangheri--2019"></div> Zangheri, P., T. Serrenho, and P. Bertoldi, 2019: Energy Savings from Feedback Systems: A Meta-Studies’ Review. ''Energies'' , '''12(19)''' , 3788, doi:10.3390/en12193788. <div id="Zeng--2017"></div> Zeng, W., T. Miwa, and T. Morikawa, 2017: Application of the support vector machine and heuristic k-shortest path algorithm to determine the most eco-friendly path with a travel time constraint. ''Transp. Res. Part D Transp. Environ.'' , '''57''' , 458–473, doi:10.1016/j.trd.2017.10.001. <div id="Zhan--2011"></div> Zhan, L., M. Ju, and J. Liu, 2011: Improvement of China Energy Label System to Promote Sustainable Energy Consumption. ''Energy Procedia'' , '''5''' , 2308–2315, doi:10.1016/j.egypro.2011.03.397. <div id="Zhang--2016"></div> Zhang, F. and K.S. Gallagher, 2016: Innovation and technology transfer through global value chains: Evidence from China’s PV industry. ''Energy Policy'' , '''94''' , 191–203, doi:10.1016/J.ENPOL.2016.04.014. <div id="Zhang--2017"></div> Zhang, L., H. Liu, and J. Wu, 2017: The price premium for green-labelled housing: Evidence from China. ''Urban Stud.'' , '''54(15)''' , 3524–3541, doi:10.1177/0042098016668288. <div id="Zhang--2019"></div> Zhang, N., Y. Choi, and W. Wang, 2019: Does energy research funding work? Evidence from the Natural Science Foundation of China using TEI@I method. ''Technol. Forecast. Soc. Change'' , '''144''' , 369–380, doi:10.1016/j.techfore.2018.02.001. <div id="Zhou--2019"></div> Zhou, C., 2019: Enabling Law and Policy Environment for Climate Technology Transfer: From Perspectives of Host Countries. ''J. East Asia Int. Law'' , '''12(1)''' , 45–70, doi:10.14330/jeail.2019.12.1.03. <div id="Zhou--2010"></div> Zhou, N., M.D. Levine, and L. Price, 2010: Overview of current energy-efficiency policies in China. ''Energy Policy'' , '''38(11)''' , 6439–6452, doi:10.1016/j.enpol.2009.08.015. <div id="Zhuang--2017"></div> Zhuang, W., 2017: ''Intellectual Property Rights and Climate Change'' . Cambridge University Press, Cambridge, UK, 428 pp. <div id="Ziervogel--2021"></div> Ziervogel, G., J. Enqvist, L. Metelerkamp, and J. van Breda, 2021: Supporting transformative climate adaptation: Community-level capacity building and knowledge co-creation in South Africa. ''Clim. Policy'' , '''22(5)''' , 1–16, doi:10.1080/14693062.2020.1863180. <div id="Zubeltzu-Jaka--2018"></div> Zubeltzu-Jaka, E., A. Erauskin-Tolosa, and I. Heras-Saizarbitoria, 2018: Shedding light on the determinants of eco-innovation: A meta-analytic study. ''Bus. Strateg. Environ.'' , '''27(7)''' , 1093–1103, doi:10.1002/BSE.2054. ----- <div id="footnote-001" class="_idFootnote"></div> [[#footnote-001-backlink|1]] For example, see [[#Spence--1981|Spence (1981)]] and [[#Bhattacharya--1984|Bhattacharya (1984)]] for a discussion of first-mover advantages. <div id="footnote-000" class="_idFootnote"></div> [[#footnote-000-backlink|2]] This section draws on The role of capacity-building in policies for climate change mitigation and sustainable development: The case of energy efficiency in India , ( [[#Malhotra--2021|Malhotra et al. 2021]] ).
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