Negative emissions—Part 2: Costs, potentials and side effects S Fuss, WF Lamb, MW Callaghan, J Hilaire, F Creutzig, T Amann, ... Environmental research letters 13 (6), 063002, 2018 | 1338 | 2018 |
Negative emissions—Part 1: Research landscape and synthesis JC Minx, WF Lamb, MW Callaghan, S Fuss, J Hilaire, F Creutzig, T Amann, ... Environmental Research Letters 13 (6), 063001, 2018 | 964* | 2018 |
Demand-pull, technology-push, and government-led incentives for non-incremental technical change GF Nemet Research policy 38 (5), 700-709, 2009 | 943 | 2009 |
Beyond the learning curve: factors influencing cost reductions in photovoltaics GF Nemet Energy policy 34 (17), 3218-3232, 2006 | 901 | 2006 |
The underestimated potential of solar energy to mitigate climate change F Creutzig, P Agoston, JC Goldschmidt, G Luderer, G Nemet, ... Nature Energy 2 (9), 1-9, 2017 | 878 | 2017 |
Distance and health care utilization among the rural elderly GF Nemet, AJ Bailey Social science & medicine 50 (9), 1197-1208, 2000 | 531 | 2000 |
Implications of incorporating air-quality co-benefits into climate change policymaking GF Nemet, T Holloway, P Meier Environmental Research Letters 5 (1), 014007, 2010 | 451 | 2010 |
US energy research and development: Declining investment, increasing need, and the feasibility of expansion GF Nemet, DM Kammen Energy Policy 35 (1), 746-755, 2007 | 384 | 2007 |
The energy technology innovation system KS Gallagher, A Grübler, L Kuhl, G Nemet, C Wilson Annual review of environment and resources 37 (1), 137-162, 2012 | 341 | 2012 |
Apples, oranges, and consistent comparisons of the temporal dynamics of energy transitions A Grubler, C Wilson, G Nemet Energy research & social science 22, 18-25, 2016 | 286 | 2016 |
Do important inventions benefit from knowledge originating in other technological domains? GF Nemet, E Johnson Research Policy 41 (1), 190-200, 2012 | 283* | 2012 |
Summary for policymakers AR Shukla, J Skea, A Reisinger, R Slade, R Fradera, M Pathak, ... Cambridge University Press, 2022 | 235 | 2022 |
How solar energy became cheap: A model for low-carbon innovation GF Nemet Routledge, 2019 | 228 | 2019 |
Marginalization of end-use technologies in energy innovation for climate protection C Wilson, A Grubler, KS Gallagher, GF Nemet Nature climate change 2 (11), 780-788, 2012 | 228 | 2012 |
Summary for policymakers T Barker, I Bashmakov, L Bernstein, J Bogner, P Bosch, R Dave, ... Climate change 2007: Mitigation of Climate Change: Contribution of Working …, 2007 | 212 | 2007 |
Probabilistic feasibility space of scaling up green hydrogen supply A Odenweller, F Ueckerdt, GF Nemet, M Jensterle, G Luderer Nature Energy 7 (9), 854-865, 2022 | 190 | 2022 |
Inter-technology knowledge spillovers for energy technologies GF Nemet Energy Economics 34 (5), 1259-1270, 2012 | 187 | 2012 |
Policy, financing and implementation C Mitchell, J Sawin, GR Pokharel, DM Kammen, Z Wang, S Fifita, ... IPCC special report on renewable energy sources and climate change mitigation, -, 2011 | 163 | 2011 |
Interim monitoring of cost dynamics for publicly supported energy technologies GF Nemet Energy Policy 37 (3), 825-835, 2009 | 160 | 2009 |
The state of carbon dioxide removal S Smith, O Geden, M Gidden, W Lamb, G Nemet, J Minx, H Buck, J Burke, ... The state of carbon dioxide removal, 2024 | 149 | 2024 |