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Directing Technical Change from Fossil-Fuel to Renewable Energy Innovation: An Empirical Application Using Firm-Level Patent Data. (2013). Noailly, Jolle ; Smeets, Roger .
In: CPB Discussion Paper.
RePEc:cpb:discus:237.

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  1. The impact of the embedded global value chain position on energy-biased technology progress: Evidence from chinas manufacturing. (2022). Peng, Jiachao ; Liu, Baozhen ; Yang, BO.
    In: Technology in Society.
    RePEc:eee:teinso:v:71:y:2022:i:c:s0160791x22002068.

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  2. Technological innovation efficiency and its impact factors: An investigation of Chinas listed energy companies. (2022). Xu, Feng ; Zheng, Zihan ; Miao, Binbin ; Piao, Zhefan.
    In: Energy Economics.
    RePEc:eee:eneeco:v:112:y:2022:i:c:s0140988322002961.

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  3. Intensive judicial oversight and corporate green innovations: Evidence from a quasi-natural experiment in China. (2022). Zhao, Zhihui ; Zhang, Zhan ; Liu, Wei ; Huang, Xiaoqi.
    In: China Economic Review.
    RePEc:eee:chieco:v:74:y:2022:i:c:s1043951x22000578.

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  4. Effectiveness of an ‘open innovation’ approach in renewable energy: Empirical evidence from a survey on solar and wind power. (2020). Lacerda, Juliana Subtil .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:118:y:2020:i:c:s1364032119307130.

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  5. The empirics of enabling investment and innovation in renewable energy. (2017). Ang, Geraldine ; Rottgers, Dirk ; Burli, Pralhad .
    In: OECD Environment Working Papers.
    RePEc:oec:envaaa:123-en.

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  6. Induced technological change and energy efficiency improvements. (2017). Witajewski-Baltvilks, Jan ; Tavoni, Massimo ; Verdolini, Elena.
    In: Energy Economics.
    RePEc:eee:eneeco:v:68:y:2017:i:s1:p:17-32.

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  7. Directed Technological Change and Energy Efficiency Improvements. (2015). Witajewski-Baltvilks, Jan ; Verdolini, Elena ; Tavoni, Massimo.
    In: Working Papers.
    RePEc:fem:femwpa:2015.78.

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  8. Knowledge Spillovers from Renewable energy Technologies, Lessons from patent citations. (2013). Noailly, Joëlle ; Shestalova, Victoria.
    In: CIES Research Paper series.
    RePEc:gii:ciesrp:cies_rp_22.

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  9. Innovation policy for directing technical change in the power sector. (2013). Aalbers, Rob ; Kocsis, Viktoria ; Shestalova, Victoria.
    In: Energy Policy.
    RePEc:eee:enepol:v:63:y:2013:i:c:p:1240-1250.

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  10. Knowledge spillovers from renewable energy technologies, Lessons from patent citations. (2013). Shestalova, Victoria ; Noailly, Joelle.
    In: CPB Discussion Paper.
    RePEc:cpb:discus:262.rdf.

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  11. Knowledge spillovers from renewable energy technologies, Lessons from patent citations. (2013). Noailly, Jolle ; Shestalova, Victoria.
    In: CPB Discussion Paper.
    RePEc:cpb:discus:262.

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  12. Innovation policy for directing technical change in the power sector. (2012). Kocsis, Viktoria ; Aalbers, Rob ; Shestalova, Victoria.
    In: CPB Discussion Paper.
    RePEc:cpb:discus:223.

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References

References cited by this document

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  10. Johnstone, N., Hascic, I. and Popp, D. 2010. ‘Renewable Energy Policies and Technological Innovation: Evidence Based on Patent Counts’. Environmental and Resource Economics 45(1), 133–155.

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  14. Publisher: CPB Netherlands Bureau for Economic Policy Analysis P.O. Box 80510 | 2508 GM  The Hague t (070) 3383 380 March 2013 | ISBN 978-90-5833-591-3
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