| The momentum of the solar energy transition FJMM Nijsse, JF Mercure, N Ameli, F Larosa, S Kothari, J Rickman, ... Nature Communications 14 (1), 6542, 2023 | 322 | 2023 |
| Emergent constraints on transient climate response (TCR) and equilibrium climate sensitivity (ECS) from historical warming in CMIP5 and CMIP6 models FJMM Nijsse, PM Cox, MS Williamson Earth System Dynamics 11 (3), 737-750, 2020 | 229 | 2020 |
| Risk-opportunity analysis for transformative policy design and appraisal JF Mercure, S Sharpe, JE Vinuales, M Ives, M Grubb, A Lam, ... Global Environmental Change 70, 102359, 2021 | 87 | 2021 |
| Emergent constraints on climate sensitivities MS Williamson, CW Thackeray, PM Cox, A Hall, C Huntingford, ... Reviews of Modern Physics 93 (2), 025004, 2021 | 82 | 2021 |
| A multi-model assessment of inequality and climate change J Emmerling, P Andreoni, I Charalampidis, S Dasgupta, F Dennig, ... Nature Climate Change 14 (12), 1254-1260, 2024 | 49 | 2024 |
| Decadal global temperature variability increases strongly with climate sensitivity FJMM Nijsse, PM Cox, C Huntingford, MS Williamson Nature Climate Change 9 (8), 598-601, 2019 | 49 | 2019 |
| CMIP6 climate models imply high committed warming C Huntingford, MS Williamson, FJMM Nijsse Climatic Change 162 (3), 1515-1520, 2020 | 32 | 2020 |
| Deciding how to decide: Risk-opportunity analysis as a generalisation of cost-benefit analysis S Sharpe, JF Mercure, J Vinuales, M Ives, H Pollitt, F Knobloch, ... UCL Institute for Innovation and Public Purpose, 2021 | 22 | 2021 |
| Theoretical foundations of emergent constraints: relationships between climate sensitivity and global temperature variability in conceptual models MS Williamson, PM Cox, FJMM Nijsse Dynamics and Statistics of the Climate System 3 (1), dzy006, 2018 | 21 | 2018 |
| Structural change and socio-economic disparities in a net zero transition C Lynch, Y Simsek, JF Mercure, P Fragkos, J Lefèvre, T Le Gallic, ... Economic Systems Research 36 (4), 607-629, 2024 | 16 | 2024 |
| A mathematical approach to understanding emergent constraints F Nijsse, H Dijkstra Earth System Dynamics 9, 999–1012, 2018 | 16 | 2018 |
| Cox et al. reply PM Cox, MS Williamson, FJMM Nijsse, C Huntingford Nature 563 (7729), E10-E15, 2018 | 13 | 2018 |
| New economic models of energy innovation and transition: Addressing new questions and providing better answers P Barbrook-Johnson, S Sharpe, R Pasqualino, FS Moura, F Nijsee, ... The Economics of Energy Innovation and System Transition (EEIST): https …, 2023 | 10 | 2023 |
| How are climate policies assessed in emerging economies? A study of ex-ante policy appraisal in Brazil, China, and India J Qin, C Lynch, P Barbrook-Johnson, P Salas, G Yang, ... Climate Policy 24 (9), 1242-1258, 2024 | 8 | 2024 |
| Modelling induced innovation for the low-carbon energy transition: a menu of options R Pasqualino, C Peñasco, P Barbrook-Johnson, FS De Moura, ... Environmental Research Letters 19 (7), 073004, 2024 | 8 | 2024 |
| Towards modelling post-growth climate futures: a review of current modelling practices and next steps A Edwards, P Brockway, K Bickerstaff, FJMM Nijsse Environmental Research Letters, 2025 | 7 | 2025 |
| Is a solar future inevitable? F Nijsse, J Mercure, N Ameli, F Larosa, S Kothari, J Rickman, P Vercoulen, ... Global Systems Institute, University of Exeter, 2022 | 7 | 2022 |
| A method to identify positive tipping points to accelerate low-carbon transitions and actions to trigger them TM Lenton, TWR Powell, SR Smith, FW Geels, F Alkemade, M Ayoub, ... Sustainability Science, 1-20, 2025 | 6 | 2025 |
| ESD Reviews: Thermodynamic optimality in Earth sciences. The missing constraints in modeling Earth system dynamics? M Westhoff, A Kleidon, S Schymanski, B Dewals, F Nijsse, M Renner, ... Earth System Dynamics Discussions 2019, 1-31, 2019 | 5 | 2019 |
| How to leverage positive tipping points for climate action FJMM Nijsse, TM Lenton, SR Smith Bulletin of the Atomic Scientists 81 (2), 101-106, 2025 | 3 | 2025 |