The experience curve theory and its application in the field of electricity generation technologies–A literature review S Samadi Renewable and Sustainable Energy Reviews 82, 2346-2364, 2018 | 170 | 2018 |
Assessing the need for critical minerals to shift the German energy system towards a high proportion of renewables P Viebahn, O Soukup, S Samadi, J Teubler, K Wiesen, M Ritthoff Renewable and Sustainable Energy Reviews 49, 655-671, 2015 | 170 | 2015 |
A pathway design framework for national low greenhouse gas emission development strategies H Waisman, C Bataille, H Winkler, F Jotzo, P Shukla, M Colombier, ... Nature Climate Change 9 (4), 261-268, 2019 | 160 | 2019 |
Sufficiency in energy scenario studies: Taking the potential benefits of lifestyle changes into account S Samadi, MC Gröne, U Schneidewind, HJ Luhmann, J Venjakob, B Best Technological Forecasting and Social Change 124, 126-134, 2017 | 147 | 2017 |
Induced innovation in energy technologies and systems: a review of evidence and potential implications for CO2 mitigation M Grubb, P Drummond, A Poncia, W McDowall, D Popp, S Samadi, ... Environmental Research Letters 16 (4), 043007, 2021 | 145 | 2021 |
Role and potential of renewable energy and energy efficiency for global energy supply W Krewitt, K Nienhaus, C Kleßmann, C Capone, E Stricker, W Graus, ... | 103 | 2009 |
The social costs of electricity generation—Categorising different types of costs and evaluating their respective relevance S Samadi Energies 10 (3), 356, 2017 | 68 | 2017 |
Scenario-based comparative assessment of potential future electricity systems–a new methodological approach using Germany in 2050 as an example B Lunz, P Stöcker, S Eckstein, A Nebel, S Samadi, B Erlach, M Fischedick, ... Applied energy 171, 555-580, 2016 | 54 | 2016 |
Tracking sectoral progress in the deep decarbonisation of energy systems in Europe T Spencer, R Pierfederici, O Sartor, N Berghmans, S Samadi, ... Energy Policy 110, 509-517, 2017 | 51 | 2017 |
CO2-neutral bis 2035: Eckpunkte eines deutschen Beitrags zur Einhaltung der 1, 5-° C-Grenze; Diskussionsbeitrag für Fridays for Future Deutschland G Kobiela, S Samadi, J Kurwan, A Tönjes, M Fischedick, T Koska, ... Wuppertal Institut für Klima, Umwelt, Energie, 2020 | 47 | 2020 |
Blown by the wind. Replacing nuclear power in German electricity generation S Lechtenböhmer, S Samadi Environmental Science & Policy 25, 234-241, 2013 | 45 | 2013 |
Uncertainty management and the dynamic adjustment of deep decarbonization pathways S Mathy, P Criqui, K Knoop, M Fischedick, S Samadi Climate Policy 16 (sup1), S47-S62, 2016 | 43 | 2016 |
The role of clean hydrogen in the future energy systems of Japan and Germany: an analysis of existing mid-century scenarios and an investigation of hydrogen supply chains M Jensterle, J Narita, R Piria, S Samadi, M Prantner, K Crone, ... Adelphi, 2019 | 36 | 2019 |
The renewables pull effect: How regional differences in renewable energy costs could influence where industrial production is located in the future S Samadi, A Fischer, S Lechtenböhmer Energy Research & Social Science 104, 103257, 2023 | 34 | 2023 |
Pathways to deep decarbonization in Germany K Hillebrandt, S Samadi, M Fischedick Sustainable Development Solutions Network, 2015 | 29 | 2015 |
Decarbonization pathways for the industrial cluster of the port of Rotterdam S Samadi, S Lechtenböhmer, C Schneider, K Arnold, M Fischedick, ... Wuppertal Institute for Climate, Environment and Energy, 2016 | 25 | 2016 |
Risks and opportunities associated with decarbonising Rotterdam’s industrial cluster C Schneider, S Lechtenböhmer, S Samadi Environmental innovation and societal transitions 35, 414-428, 2020 | 24 | 2020 |
Long-term low greenhouse gas emission development strategies for achieving the 1.5 C target–insights from a comparison of German bottom-up energy scenarios S Samadi, J Terrapon-Pfaff, S Lechtenböhmer, K Knoop Carbon Management 9 (5), 549-562, 2018 | 21 | 2018 |
Transforming the grid D Bauknecht Nomos Verlagsgesellschaft mbH & Co. KG, 2012 | 17 | 2012 |
An integrated comparative assessment of coal-based carbon capture and storage (CCS) vis-à-vis renewable energies in India’s low carbon electricity transition scenarios M Hiremath, P Viebahn, S Samadi Energies 14 (2), 262, 2021 | 16 | 2021 |