Does economic complexity increase energy intensity?
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[1] J. Fuinhas,et al. Factors driving CO2 emissions: the role of energy transition and brain drain , 2022, Environment, Development and Sustainability.
[2] J. Fuinhas,et al. Portfolio decisions of primary energy sources and economic complexity: The world's large energy user evidence , 2022, Renewable Energy.
[3] J. Fuinhas,et al. Heterogeneous Effect of “Eco-Friendly” Dwellings on Transaction Prices in Real Estate Market in Portugal , 2022, Energies.
[4] Muhlis Can,et al. Towards sustainable development in the European Union countries: Does economic complexity affect renewable and non‐renewable energy consumption? , 2022, Sustainable Development.
[5] I. Ozturk,et al. Does higher innovation intensity matter for abating the climate crisis in the presence of economic complexities? Evidence from a Global Panel Data , 2022, Technological Forecasting and Social Change.
[6] M. Shirazi. Assessing energy trilemma-related policies: The world's large energy user evidence , 2022, Energy Policy.
[7] J. Fuinhas,et al. The Impact of Battery-Electric Vehicles on Energy Consumption: A Macroeconomic Evidence from 29 European Countries , 2022, World Electric Vehicle Journal.
[8] M. Mercan,et al. The effect of export composition on energy demand: A fresh evidence in the context of economic complexity , 2022, Review of Development Economics.
[9] Liwen Sun,et al. Energy endowment, industrial structure upgrading, and CO2 emissions in China: Revisiting resource curse in the context of carbon emissions , 2021, Resources Policy.
[10] J. Fuinhas,et al. Measuring the economic efficiency performance in Latin American and Caribbean countries: An empirical evidence from stochastic production frontier and data envelopment analysis , 2021, International Economics.
[11] Henry Laverde-Rojas,et al. Economic growth, economic complexity, and carbon dioxide emissions: The case of Colombia , 2021, Heliyon.
[12] Buhari Doğan,et al. Role of economic complexity to induce renewable energy: contextual evidence from G7 and E7 countries , 2021 .
[13] A. Levinson. Energy intensity: Deindustrialization, composition, prices, and policies in U.S. states , 2021 .
[14] Munir Ahmad,et al. The impact of export composition on environment and energy demand: evidence from newly industrialized countries , 2021, Environmental Science and Pollution Research.
[15] K. Shahzad,et al. Investigating the nexus between economic complexity, energy consumption and ecological footprint for the United States: New insights from quantile methods , 2021 .
[16] Giray Gozgor,et al. The impact of economic complexity on energy demand in OECD countries , 2021, Environmental Science and Pollution Research.
[17] Hongbo Liu,et al. The Nexus between Economic Complexity and Energy Consumption under the Context of Sustainable Environment: Evidence from the LMC Countries , 2020, International journal of environmental research and public health.
[18] Zhijun Liang,et al. Exploring the spatial aggregation and determinants of energy intensity in guangdong province of China , 2020 .
[19] N. Apergis,et al. Convergence of per capita carbon dioxide emissions among developing countries: evidence from stochastic and club convergence tests , 2020, Environmental Science and Pollution Research.
[20] Umer Shahzad. Environmental taxes, energy consumption, and environmental quality: Theoretical survey with policy implications , 2020, Environmental Science and Pollution Research.
[21] Muhammad Wasif Zafar,et al. The impact of natural resources, human capital, and foreign direct investment on the ecological footprint: The case of the United States , 2019, Resources Policy.
[22] I. Hanif,et al. Fossil fuels, foreign direct investment, and economic growth have triggered CO2 emissions in emerging Asian economies: Some empirical evidence , 2019, Energy.
[23] Olimpia Neagu,et al. The Relationship between Economic Complexity, Energy Consumption Structure and Greenhouse Gas Emission: Heterogeneous Panel Evidence from the EU Countries , 2019, Sustainability.
[24] Hêriş Golpîra,et al. Robust Smart Energy Efficient Production Planning for a general Job-Shop Manufacturing System under combined demand and supply uncertainty in the presence of grid-connected microgrid , 2018, Journal of Cleaner Production.
[25] Samuel Asumadu Sarkodie,et al. Empirical study of the Environmental Kuznets curve and Environmental Sustainability curve hypothesis for Australia, China, Ghana and USA , 2018, Journal of Cleaner Production.
[26] F. Fontini,et al. Does energy price affect energy efficiency? Cross-country panel evidence , 2018, Energy Policy.
[27] Yuhuan Zhao,et al. Identifying the impacts of human capital on carbon emissions in Pakistan , 2018 .
[28] Boqiang Lin,et al. What cause large regional differences in PM2.5 pollutions in China? Evidence from quantile regression model , 2018 .
[29] Francisco Jareño,et al. The impact of international factors on Spanish company returns: a quantile regression approach , 2018 .
[30] P. Mealy,et al. Economic Complexity and the Green Economy , 2017, Research Policy.
[31] Muhammad Shahbaz,et al. Energy Innovations-GHG Emissions Nexus: Fresh Empirical Evidence from OECD Countries , 2017 .
[32] P. K. Adom,et al. What drives the energy saving role of FDI and industrialization in East Africa , 2016 .
[33] I. Ozturk,et al. The investigation of environmental Kuznets curve hypothesis in the advanced economies: The role of energy prices , 2016 .
[34] Francisco Jareño,et al. US stock market sensitivity to interest and inflation rates: a quantile regression approach , 2016 .
[35] M. Verbič,et al. Determinants of energy intensity in the European Union: A panel data analysis , 2015 .
[36] P. K. Adom. Determinants of energy intensity in South Africa: Testing for structural effects in parameters , 2015 .
[37] P. K. Adom. Asymmetric impacts of the determinants of energy intensity in Nigeria , 2015 .
[38] Stephen R. Bond. Relating energy use to economic complexity , 2015 .
[39] Michael F Blackhurst,et al. Energy savings and the rebound effect with multiple energy services and efficiency correlation , 2014 .
[40] P. K. Adom,et al. Effects of changing trade structure and technical characteristics of the manufacturing sector on energy intensity in Ghana , 2014 .
[41] Manuel Landajo,et al. The Divisia real energy intensity indices: Evolution and attribution of percent changes in 20 European countries from 1995 to 2010 , 2013 .
[42] Perry Sadorsky. Do urbanization and industrialization affect energy intensity in developing countries , 2013 .
[43] Yingmei Zheng,et al. The effect of increasing exports on industrial energy intensity in China , 2011 .
[44] N. Apergis,et al. Convergence patterns in financial development: evidence from club convergence , 2010 .
[45] Ludo Waltman,et al. Software survey: VOSviewer, a computer program for bibliometric mapping , 2009, Scientometrics.
[46] César A. Hidalgo,et al. The building blocks of economic complexity , 2009, Proceedings of the National Academy of Sciences.
[47] Donggyu Sul,et al. Transition Modeling and Econometric Convergence Tests , 2007 .
[48] Matthew A. Cole,et al. Does trade liberalization increase national energy use , 2006 .
[49] B. W. Ang,et al. Monitoring changes in economy-wide energy efficiency: From energy-GDP ratio to composite efficiency index , 2006 .
[50] Donggyu Sul,et al. Economic Transition and Growth , 2005 .
[51] R. Koenker. Quantile regression for longitudinal data , 2004 .
[52] M. Pesaran. General diagnostic tests for cross-sectional dependence in panels , 2004, Empirical Economics.
[53] Soumyananda Dinda. Environmental Kuznets Curve Hypothesis: A Survey , 2004 .
[54] M. Pesaran. A Simple Panel Unit Root Test in the Presence of Cross Section Dependence , 2003 .
[55] Roger Koenker,et al. Inference on the Quantile Regression Process , 2000 .
[56] P. Royston. Approximating the Shapiro-Wilk W-test for non-normality , 1992 .
[57] J. P. Royston,et al. A Simple Method for Evaluating the Shapiro-Francia W' Test of Non-Normality , 1983 .
[58] C. D. Beaumont,et al. Regression Diagnostics — Identifying Influential Data and Sources of Collinearity , 1981 .
[59] J. Fuinhas,et al. Globalisation and Energy Transition in Latin America and the Caribbean: Economic Growth and Policy Implications , 2022 .
[60] Konstantinos Boulouchos,et al. The Swiss energy transition: Policies to address the Energy Trilemma , 2021 .
[61] Avik Sinha,et al. Interplay between technological innovation and environmental quality: Formulating the SDG policies for next 11 economies , 2020, Journal of Cleaner Production.
[62] C. Fang,et al. Urbanization, economic growth, energy consumption, and CO2 emissions: Empirical evidence from countries with different income levels , 2018 .
[63] T. V. D. Graaf,et al. The international energy agency , 2014 .
[64] Shuangzhe Liu,et al. Regression diagnostics , 2020, Applied Quantitative Analysis for Real Estate.
[65] R. Koenker,et al. Regression Quantiles , 2007 .
[66] J. Westerlund. Testing for Error Correction in Panel Data , 2006 .