Acaravci, A., & Ozturk, I. (2010). On the relationship between energy consumption, CO2 emissions and economic growth in Europe. Energy, 35, 5412–5420.
Ahmed, K., Shahbaz, M., & Kyophilavong, P. (2016). Revisiting the emissions‐energy‐trade nexus: Evidence from the newly industrializing countries. Environmental Science and Pollution Research, 23(8), 7676–7691.
Akbostancı, E., Türüt‐Asık, S., & Tunç, G. I. (2009). The relationship between income and environment in Turkey: Is there an environmental Kuznets curve? Energy Policy, 37(3), 861–867.
Aldieri, L., & Vinci, C. P. (2017). The role of technology spillover in the process of water pollution abatement for large international firms. Sustainability, 9, 868.
Alvarez‐Herranz, A., Balsalobre‐Lorente, D., Shahbaz, M., & Cantos, J. M. (2017). Energy innovation and renewable energy consumption in the correction of air pollution levels. Energy Policy, 105, 386–397.
Apergis, N. (2016). Environmental Kuznets curves: New evidence on both panel and country‐level CO2 emissions. Energy Economics, 54, 263–271.
- Asane‐Otoo, E. (2015). Carbon footprint and emission determinants in Africa. Energy, 82, 426–435.
Paper not yet in RePEc: Add citation now
- Balsalobre‐Lorente, D., Driha, O. M., Bekun, F. V., & Osundina, O. A. (2019). Do agricultural activities induce carbon emissions? The BRICS experience. Environmental Science and Pollution Research, 26, 25218–25234.
Paper not yet in RePEc: Add citation now
- Balsalobre‐Lorente, D., Shahbaz, M., Jabbour, C. J. C., & Driha, O. M. (2019). The role of energy innovation and corruption in carbon emissions: Evidence based on the EKC hypothesis. In Energy and environmental strategies in the era of globalization (pp. 271–304). Cham: Springer.
Paper not yet in RePEc: Add citation now
- Balsalobre‐Lorente, D., Shahbaz, M., Ponz‐Tienda, J. L., & Cantos‐Cantos, J. M. (2017). Energy innovation in the environmental Kuznets curve (EKC): A theoretical approach. In Carbon footprint and the industrial life cycle (pp. 243–268). Cham: Springer.
Paper not yet in RePEc: Add citation now
- Barbieri, L. (2009). Panel unit root tests under cross‐sectional dependence: An overview. Journal of Statistics: Advances in Theory and Applications, 1(2), 117–158.
Paper not yet in RePEc: Add citation now
- BP. (2018). BP statistical review of world energy. June 2018. Retrieved from https://www.bp.com/en/global/corporate/energy-economics/statistical-review-of-world-nergy.html.
Paper not yet in RePEc: Add citation now
Bustos, S., Gomez, C., Hausmann, R., & Hidalgo, C. A. (2012). The dynamics of nestedness predicts the evolution of industrial ecosystems. PLoS ONE, 7(11), e49393.
Caldarelli, G., Cristelli, M., Gabrielli, A., Pietronero, L., Scala, A., & Tacchella, A. (2012). A network analysis of countries' export flows: Firm grounds for the building blocks of the economy. PLoS ONE, 7(10), e47278.
- Can, M., & Gozgor, G. (2017). The impact of economic complexity on carbon emission: Evidence from France. Environmental Science and Pollution Research, 24, 6364–16370.
Paper not yet in RePEc: Add citation now
- Celikbilek, Y., & Tuysuz, F. (2016). An integrated grey‐based multi‐criteria decision‐making approach for the evaluation of renewable energy sources. Energy, 115, 1246–1258.
Paper not yet in RePEc: Add citation now
- Cerdeira Bento, J. P., & Moutinho, V. (2016). CO2 emissions, non‐renewable and renewable electricity production, economic growth, and international trade in Italy. Renewable and Sustainable Energy Reviews, 55, 142–155.
Paper not yet in RePEc: Add citation now
Chen, J., Zhou, C., Wang, S., & Li, S. (2018). Impacts of energy consumption structure, energy intensity, economic growth, urbanization on PM2.5 concentrations in countries globally. Applied Energy, 230, 94–105.
- Chunbo, M., & David, I. (2008). China's changing energy intensity trend: A decomposition analysis. Energy Economics, 30, 1037–1053.
Paper not yet in RePEc: Add citation now
- Coenen, L., & Díaz‐Lopez, F. J. (2010). Comparing systems approaches to innovation and technological change for sustainable and competitive economies: An explorative study into conceptual commonalities, differences and complementarities. Journal of Cleaner Production, 18, 1149–1160.
Paper not yet in RePEc: Add citation now
Cristelli, M., Tacchella, A., & Pietronero, L. (2015). The heterogeneous dynamics of economic complexity. PLoS ONE, 10(2), e0117174.
- Danish, & Wang, Z. (2019). Investigation of the ecological footprint's driving factors: What we learn from the experience of emerging economies. Sustainable Cities and Society, 49, 1016–1026.
Paper not yet in RePEc: Add citation now
Dietrich, A. (2012). Does growth cause structural change, or is it the other way around? A dynamic panel data analysis for seven OECD countries. Empirical Economics, 43(3), 915–944.
Dinda, S. (2004). Environmental Kuznets curve hypothesis: A survey. Ecological Economics, 49(4), 431–455.
- Doğan, B., & Değer, O. (2018). The role of economic growth and energy consumption on CO2 emissions in E7 countries. Theoretical and Applied Economics, 252(615), 231–246.
Paper not yet in RePEc: Add citation now
- Doğan, B., Madaleno, M., Tiwari, A. K., & Shawkat, H. (2020). Impacts of export quality on environmental degradation: Does income matter? Environmental Science and Pollution Research, 27, 13735–13772.
Paper not yet in RePEc: Add citation now
- Doğan, B., Saboori, B., & Can, M. (2019). Does economic complexity matter for environmental degradation? An empirical analysis for different stages of development. Environmental Science and Pollution, 26(31), 31900–31912.
Paper not yet in RePEc: Add citation now
Eberhardt, M., & Bond, S. (2009). Cross‐section dependence in nonstationary panel models: A novel estimator. MPRA Paper No. 17870.
Eberhardt, M., & Teal, F. (2010). Productivity analysis in global manufacturing production. Economics Series Working Papers 515. Department of Economics, University of Oxford.
Eberhardt, M., & Teal, F. (2011). Econometrics for grumblers: A new look at the literature on cross‐country growth empirics. Journal of Economic Surveys, 25(1), 109–155.
- Erkan, B., & Yildirimci, E. (2015). Economic complexity and export competitiveness: The case of Turkey. Procedia‐Social and Behavioral Sciences, 195, 524–533.
Paper not yet in RePEc: Add citation now
- Ertan Özgüzer, G., & Oğuş‐Binatlı, A. (2016). Economic convergence in the EU: A complexity approach. Eastern European Economics, 54(2), 93–108.
Paper not yet in RePEc: Add citation now
- Fang, J., Gozgor, G., Lu, Z., & Wu, W. (2019). Effects of the export product quality on carbon dioxide emissions: Evidence from developing economies. Environmental Science and Pollution Research, 26(12), 2181–12193.
Paper not yet in RePEc: Add citation now
Farhani, S., & Rejeb, J. B. (2012). Energy consumption, economic growth and CO2 emissions: Evidence from panel data for MENA region. International Journal of Energy Economics and Policy, 2(2), 71–81.
- Felipe, J. (2012). Inclusive growth, full employment, and structural change: Implications and policies for developing Asia. London: Anthem Press.
Paper not yet in RePEc: Add citation now
Felipe, J., Kumar, U., Abdon, A., & Bacate, M. (2012). Product complexity and economic development. Structural Change and Economic Dynamics, 23, 36–68.
Feng, T. W., Sun, L. Y., & Zhang, Y. (2009). The relationship between energy consumption structure, economic structure and energy intensity in China. Energy Policy, 37, 5475–5483.
Ferrarini, B., & Scaramozzino, P. (2016). Production complexity, adaptability and economic growth. Structural Change and Economic Dynamics, 37, 52–61.
Fotis, P., & Polemis, M. (2018). Sustainable development, environmental policy and renewable energy use: A dynamic panel data approach. Sustainable Development, 26(6), 726–740.
Galeotti, M., Manera, M., & Lanza, A. (2009). On the robustness of robustness checks of the environmental Kuznets curve hypothesis. Environmental and Resource Economics, 42(4), 551–574.
Govindaraju, V. C., & Tang, C. F. (2013). The dynamic links between CO2 emissions, economic growth and coal consumption in China and India. Applied Energy, 104, 310–318.
Guo, P., Wang, T., Li, D., & Xijun, Z. (2016). How energy technology innovation affects transition of coal resource‐based economy in China. Energy Policy, 92, 1–6.
Hamrita, M. E., & Mekdam, M. (2016). Energy consumption, CO2 emissions and economic growth nexus: Evidence from panel Granger causality test. MPRA Paper, No. 72908. Retrieved from https://mpra.ub.unimuenchen.de/72908/.
Hartmann, D., & Pyka, A. (2013). Innovation, economic diversification and human development.
Hartmann, D., Guevara, M. R., Jara‐Figueroa, C., Aristarán, M., & Hidalgo, C. A. (2017). Linking economic complexity, institutions, and income inequality. World Development, 93, 75–93.
- Hausmann, R., & Rodrik, D. (2003). Economic development as self‐discovery. Journal of Development Economics, 72, 603–633.
Paper not yet in RePEc: Add citation now
Hausmann, R., Hidalgo, C. A., Bustos, S., Coscia, M., Simoes, A., & Yildirim, M. A. (2014). The atlas of economic complexity: Mapping paths to prosperity. Cambridge, MA: MIT Press.
Hidalgo, C. A., & Hausmann, R. (2009). The building blocks of economic complexity. Proceedings of the National Academy of Sciences, 106(26), 10570–10575.
Hidalgo, C. A., Klinger, B., Barabási, A.‐L., & Hausmann, R. (2007). The product space conditions the development of nations. Science, 317(5837), 482–487.
Hill, R. J., & Magnani, E. (2002). An exploration of the conceptual and empirical basis of the environmental Kuznets curve. Australian Economic Papers, 41(2), 239–254.
Hu, Y., Peng, L., Li, X., Yao, X., Lin, H., & Chi, T. (2018). A novel evolution tree for analyzing the global energy consumption structure. Energy, 147, 1177–1187.
Imbs, J., & Wacziarg, R. (2003). Stages of diversification. American Economic Review, 93(1), 63–86.
Jayanthakumaran, K., Verma, R., & Liu, Y. (2012). CO2 emissions, energy consumption, trade and income: A comparative analysis of China and India. Energy Policy, 42, 450–460.
Jones, C. I. (1995). R&D based models of economic growth. Journal of Political Economy, 103, 759–784.
Kahia, M., Aissa, M. S. B., & Charfeddine, L. (2016). Impact of renewable and non‐renewable energy consumption on economic growth: New evidence from the MENA net oil exporting countries (NOECs). Energy, 116, 102–115.
- Kahia, M., Ben Jebli, M., & Belloumi, M. (2019). Analysis of the impact of renewable energy consumption and economic growth on carbon dioxide emissions in 12 MENA countries. Clean Technologies and Environmental Policy, 21(4), 871–885.
Paper not yet in RePEc: Add citation now
Khan, S. A. R., Zhang, Y., Kumar, A., Zavadskas, E., & Streimikiene, D. (2020). Measuring the impact of renewable energy, public health expenditure, logistics, and environmental performance on sustainable economic growth. Sustainable Development., 28, 833–843.
Kijima, M., Nishide, K., & Ohyama, A. (2010). Economic models for the environmental Kuznets curve: A survey. Journal of Economic Dynamics and Control, 34(7), 1187–1201.
Kim, J. (2018). Technological forecasting & social change are countries ready for the new meso revolution ? Testing the waters for new industrial change in Korea. Technological Forecasting and Social Change, 132, 34–39.
Lapatinas, A., Garas, A., Boleti, E., & Kyriakou, A. (2019). Economic complexity and environmental performance: Evidence from a world sample. Munich: Munich University Library.
Lee, C. C., & Lee, J. D. (2009). Income and CO2 emissions: Evidence from panel unit root and cointegration tests. Energy Policy, 37(2), 413–423.
- Li, H., Mu, H., Zhang, M., & Gui, S. (2012). Analysis of regional difference on impact factors of China's energy‐related CO2 emissions. Energy, 39(1), 319–326.
Paper not yet in RePEc: Add citation now
Liddle, B. (2014). Impact of population, age structure, and urbanization on carbon emissions/energy consumption: Evidence from macro‐level, cross‐country analyses. Population and Environment, 35(3), 286–304.
Liddle, B., & Lung, S. (2010). Age‐structure, urbanization, and climate change in developed countries: Revisiting STIRPAT for disaggregated population and consumption‐related environmental impacts. Population and Environment, 31(5), 317–343.
- Madlener, R., & Sunak, Y. (2011). Impacts of urbanization on urban structures and energy demand: What can we learn for urban energy planning and urbanization management? Sustainable Cities and Society, 1(1), 45–53.
Paper not yet in RePEc: Add citation now
Martínez‐Zarzoso, I., & Maruotti, A. (2011). The impact of urbanization on CO2 emissions: Evidence from developing countries. Ecological Economics, 70(7), 1344–1353.
- Martínez‐Zarzoso, I., Bengochea‐Morancho, A., & Morales‐Lage, R. (2007). The impact of population on CO2 emissions: Evidence from European countries. Environmental and Resource Economics, 38(4), 497–512.
Paper not yet in RePEc: Add citation now
Menyah, K., & Rufael, Y. W. (2010). CO2 emissions, nuclear energy, renewable energy and economic growth in the US. Energy Policy, 38(6), 2911–2915.
Menz, T., & Welsch, H. (2012). Population ageing and carbon emissions in OECD countries: Accounting for life‐cycle and cohort effects. Energy Economics, 34(3), 842–849.
- Miao, C., Fang, D., Sun, L., Luo, Q., & Yu, Q. (2018). Driving effect of technology innovation on energy utilization efficiency in strategic emerging industries. Journal of Cleaner Production, 170, 1177–1184.
Paper not yet in RePEc: Add citation now
Minondo, A., & Requena‐Silvente, F. (2013). Does complexity explain the structure of trade? Canadian Journal of Economics/Revue Canadienne d'économique, 46(3), 928–955.
- Montalvo, C. (2008). General wisdom concerning the factors affecting the adoption of cleaner technologies: A survey 1990–2007. Journal of Cleaner Production, 16(1), 7–13.
Paper not yet in RePEc: Add citation now
Nam, T. (2019). Technological forecasting & social change technology usage expected job sustainability and perceived job insecurity. Technological Forecasting and Social Change, 138, 155–165.
Narayan, P. (2005). The saving and investment nexus for China: Evidence from cointegration tests. Applied Economics, 37(17), 1979–1990.
Neagu, O., & Teodoru, M. C. (2019). The relationship between economic complexity, energy consumption structure and greenhouse gas emission: Heterogeneous panel evidence from the EU countries. Sustainability, 11(2), 1–29.
Ozcan, B. (2013). The nexus between carbon emissions, energy consumption and economic growth in Middle East countries: A panel data analysis. Energy Policy, 62, 1138–1147.
- Ozcan, B., & Apergis, N. (2018). The impact of internet use on air pollution: Evidence from emerging countries. Environmental Science and Pollution Research, 25(5), 4174–4189.
Paper not yet in RePEc: Add citation now
Ozcan, B., Tzeremes, P. G., & Tzeremes, N. G. (2020). Energy consumption, economic growth and environmental degradation in OECD countries. Economic Modelling, 84, 203–213.
- Park, Y., Meng, F., & Baloch, M. A. (2018). The effect of ICT, financial development, growth, and trade openness on CO2 emissions: An empirical analysis. Environmental Science and Pollution Research, 25(30), 30708–30719.
Paper not yet in RePEc: Add citation now
- Pedroni, P. (2001a). Panel cointegration; asymptotic and finite sample properties of pooled time series tests, with an application to the PPP hypothesis. Revised working paper, Indiana University.
Paper not yet in RePEc: Add citation now
Pedroni, P. (2001b). Purchasing power parity tests in Cointegrated panels. The Review of Economics and Statistics, 83, 727–731.
Pesaran, M. (2004). General diagnostic tests for cross‐section dependence in panels. Cambridge Working Papers in Economics, 0435. Cambridge University, Cambridge.
Pesaran, M. H. (2006). Estimation and inference in large heterogeneous panels with a multifactor error structure. Econometrica, 74(4), 967–1012.
Pesaran, M., Shin, Y., & Smith, R. (2001). Bounds testing approaches to the analysis of level relationships. Journal of Applied Econometrics, 16(3), 289–326.
Pesaran, M.H. (2007). A simple panel unit root test in the presence of cross‐section dependence. Journal of Applied Econometrics, 22(2), 265–312.
Phillips, P. C., & Hansen, B. E. (1990). Statistical inference in instrumental variables regression with I(1) processes. The Review of Economic Studies, 57(1), 99–125.
Poncet, S., & Waldemar, F. S. (2013). Export upgrading and growth: The prerequisite of domestic embeddedness. World Development, 51, 104–118.
- Raza, S. A., & Shah, N. (2018). Testing environmental Kuznets curve hypothesis in G7 countries: The role of renewable energy consumption and trade. Environmental Science and Pollution Research, 25(27), 26965–26977.
Paper not yet in RePEc: Add citation now
Rennings, K. (2000). Redefining innovation e eco‐innovation research and the contribution from ecological economics. Ecological Economics, 32, 319–332.
Saboori, B., & Sulaiman, J. (2013). Environmental degradation, economic growth and energy consumption: Evidence of the environmental Kuznets curve in Malaysia. Energy Policy, 60, 892–905.
- Saidi, K., & Hammami, S. (2015). The impact of CO2 emissions and economic growth on energy consumption in 58 countries. Energy Reports, 1, 62–70.
Paper not yet in RePEc: Add citation now
Saikkonen, P. (1991). Asymptotically efficient estimation of cointegration regressions. Econometric Theory, 7(1), 1–21.
- Sampaio, P. G. V., González, M. O. A., de Vasconcelos, R. M., dos Santos, M. A. T., de Toledo, J. C., & Pereira, J. P. P. (2018). Photovoltaic technologies: Mapping from patent analysis. Renewable and Sustainable Energy Reviews, 93, 215–224.
Paper not yet in RePEc: Add citation now
Sarwar, S., Shahzad, U., Chang, D., & Tang, B. (2019). Economic and non‐economic sector reforms in carbon mitigation: Empirical evidence from Chinese provinces. Structural Change and Economic Dynamics, 49, 146–154.
Seow, Y., Goffin, N., Rahimifard, S., & Woolley, E. A. (2016). Design for energy minimization approach to reduce energy consumption during the manufacturing phase. Energy, 109, 894–905.
Shafiei, S., & Salim, R. A. (2014). Non‐renewable and renewable energy consumption and CO2 emissions in OECD countries: A comparative analysis. Energy Policy, 66, 547–556.
Shahbaz, M., Kablan, S., Hammoudeh, S., Ali, M., & Kontoleon, A. (2020). Environmental implications of increased US oil production and liberal growth agenda in the post‐Paris agreement era. Journal of Environmental Management, 271, 110785. https://doi.org/10.1016/j.jenvman.2020.110785.
Shahbaz, M., Sarwar, S., Chen, W., & Malik, M. N. (2017). Dynamics of electricity consumption, oil price and economic growth: Global perspective. Energy Policy, 108, 256–270.
- Shahzad, U., Sarwar, S., Amin, W., & Zaman, Q. U. (2018). The relationship among economic growth, renewable energy consumption, CO2 emissions and agriculture production: Empirical evidence for China and India. Global and Local Economic Review, 22(1), 41–68.
Paper not yet in RePEc: Add citation now
Sinha, A., & Sen, S. (2016). Atmospheric consequences of trade and human development: A case of 8 BRIC countries. Atmospheric Pollution Research, 7(6), 980–989.
Stock, J. H., & Watson, M. W. (1993). Simple estimator of cointegrating vectors in higher order integrated systems. Econometrica, 61(4), 783–820.
Tacchella, A., Cristelli, M., Caldarelli, G., Gabrielli, A., & Pietronero, L. (2013). Economic complexity: Conceptual grounding of new metrics for global competitiveness. Journal of Economic Dynamics and Control, 37(8), 1683–1691.
Tarancon, M. A., & Del Rio, P. (2007). CO2 emissions and intersectoral linkages. The case of Spain. Energy Policy, 35(2), 1100–1116.
- Tisdell, C. A. (2001). Globalization, the environment and sustainability: EKC, neo‐malthusian concerns and the WTO (No. 1742‐2016‐140751, pp. 1–24).
Paper not yet in RePEc: Add citation now
Tsurumi, T., & Managi, S. (2010). Decomposition of the environmental Kuznets curve: Scale, technique, and composition effects. Environmental Economics and Policy Studies, 11(1–4), 19–36.
- UCSUSA. (2017). Benefits of renewable energy use. Retrieved from https://www.ucsusa.org/clean-energy/renewable-energy/public-benefits-of-renewable-power.
Paper not yet in RePEc: Add citation now
- Wang, L., Vo, X. V., Shahbaz, M., & Ak, A. (2020). Globalization and carbon emissions: Is there any role of agriculture value‐added, financial development, and natural resource rent in the aftermath of COP21? Journal of Environmental Management, 268, 110712. https://doi.org/10.1016/j.jenvman.2020.110712.
Paper not yet in RePEc: Add citation now
- Wang, R., Mirza, N., Vasbieva, D. G., Abbas, Q., & Xiong, D. (2020). The nexus of carbon emissions, financial development, renewable energy consumption, and technological innovation: What should be the priorities in light of COP21 agreements ? Journal of Environmental Management, 271, 111027. https://doi.org/10.1016/j.jenvman.2020.111027.
Paper not yet in RePEc: Add citation now
Wang, S., Fang, C., Guan, X., Pang, B., & Ma, H. (2014). Urbanization, energy consumption, and carbon dioxide emissions in China: A panel data analysis of China's provinces. Applied Energy, 136, 738–749.
- World Development Bank. (2020). World development indicators. July 15, 2018, tarihinde. Retrieved from http://databank.worldbank.org/data/reports.aspx?source=world-development-indicators.
Paper not yet in RePEc: Add citation now
Wu, Z. B., & Xu, J. P. (2013). Predicting and optimization of energy consumption using system dynamics‐fuzzy multiple objective programming in world heritage areas. Energy, 49, 19–31.
Xu, B., & Lin, B. (2015). How industrialization and urbanization process impacts on CO2 emissions in China: Evidence from nonparametric additive regression models. Energy Economics, 48, 188–202.
- Yildirim, P., Birant, D., & Alpyildiz, T. (2018). Data mining and machine learning in the textile industry. Wiley Interdisciplinary Reviews: Data Mining and Knowledge Discovery, 8(1), e1228.
Paper not yet in RePEc: Add citation now
Yin, J., Zheng, M., & Chen, J. (2015). The effects of environmental regulation and technical progress on CO2 Kuznets curve: An evidence from China. Energy Policy, 77, 97–108.
Zhang, C., & Lin, Y. (2012). Panel estimation for urbanization, energy consumption and CO2 emissions: A regional analysis in China. Energy Policy, 49, 488–498.
Zhang, M., & Song, Y. (2015). Exploring the influence factors governing the changes in China's final energy consumption under a new framework. Natural Hazards, 78, 653–668.
- Zhou, W., Zhu, B., Chen, D., Griffy‐Brown, C., Ma, Y., & Fei, W. (2012). Energy consumption patterns in the process of China's urbanization. Population and Environment, 33(2–3), 202–220.
Paper not yet in RePEc: Add citation now