| Rechargeable batteries of the future—the state of the art from a BATTERY 2030+ perspective M Fichtner, K Edström, E Ayerbe, M Berecibar, A Bhowmik, IE Castelli, ... Advanced Energy Materials 12 (17), 2102904, 2022 | 387 | 2022 |
| A roadmap for transforming research to invent the batteries of the future designed within the European large scale research initiative BATTERY 2030+ J Amici, P Asinari, E Ayerbe, P Barboux, P Bayle‐Guillemaud, RJ Behm, ... Advanced energy materials 12 (17), 2102785, 2022 | 225 | 2022 |
| Digitalization of battery manufacturing: current status, challenges, and opportunities E Ayerbe, M Berecibar, S Clark, AA Franco, J Ruhland Advanced Energy Materials 12 (17), 2102696, 2022 | 188 | 2022 |
| Innovative zinc-based batteries N Borchers, S Clark, B Horstmann, K Jayasayee, M Juel, P Stevens Journal of Power Sources 484, 229309, 2021 | 159 | 2021 |
| Rational development of neutral aqueous electrolytes for zinc–air batteries S Clark, A Latz, B Horstmann ChemSusChem 10 (23), 4735-4747, 2017 | 131 | 2017 |
| A review of model-based design tools for metal-air batteries S Clark, A Latz, B Horstmann Batteries 4 (1), 5, 2018 | 119 | 2018 |
| Toward a unified description of battery data S Clark, FL Bleken, S Stier, E Flores, CW Andersen, M Marcinek, ... Advanced Energy Materials 12 (17), 2102702, 2022 | 108 | 2022 |
| Principles of the battery data genome L Ward, S Babinec, EJ Dufek, DA Howey, V Viswanathan, M Aykol, ... Joule 6 (10), 2253-2271, 2022 | 103 | 2022 |
| Designing aqueous organic electrolytes for zinc–air batteries: method, simulation, and validation S Clark, AR Mainar, E Iruin, LC Colmenares, JA Blázquez, JR Tolchard, ... Advanced Energy Materials 10 (10), 1903470, 2020 | 89 | 2020 |
| Towards Rechargeable Zinc-Air Batteries with Aqueous Chloride Electrolytes S Clark, AR Mainar, E Iruin, LC Colmenares, JA Blázquez, JR Tolchard, ... Journal of Materials Chemistry A 7 (18), 11387-11399, 2019 | 83 | 2019 |
| Materials acceleration platforms (MAPs): accelerating materials research and development to meet urgent societal challenges SP Stier, C Kreisbeck, H Ihssen, MA Popp, J Hauch, K Malek, M Reynaud, ... Advanced Materials 36 (45), 2407791, 2024 | 57 | 2024 |
| Data Management Plans: the Importance of Data Management in the BIG‐MAP Project IE Castelli, DJ Arismendi‐Arrieta, A Bhowmik, I Cekic‐Laskovic, S Clark, ... Batteries & Supercaps 4 (12), 1803-1812, 2021 | 50 | 2021 |
| Designing a manganese oxide bifunctional air electrode for aqueous chloride-based electrolytes in secondary zinc-air batteries E Iruin, AR Mainar, M Enterria, N Ortiz-Vitoriano, JA Blázquez, ... Electrochimica Acta 320, 134557, 2019 | 37 | 2019 |
| Battery 2030+ roadmap K Edström | 36 | 2020 |
| Brokering between tenants for an international materials acceleration platform M Vogler, J Busk, H Hajiyani, PB Jørgensen, N Safaei, IE Castelli, ... Matter 6 (9), 2647-2665, 2023 | 35 | 2023 |
| Cold sintering as a cost-effective process to manufacture porous zinc electrodes for rechargeable zinc-air batteries K Jayasayee, S Clark, C King, PI Dahl, J Richard Tolchard, M Juel Processes 8 (5), 592, 2020 | 23 | 2020 |
| Autonomous battery optimization by deploying distributed experiments and simulations M Vogler, SK Steensen, FF Ramírez, L Merker, J Busk, JM Carlsson, ... Advanced Energy Materials 14 (46), 2403263, 2024 | 17 | 2024 |
| Aqueous zinc batteries S Clark, N Borchers, Z Jusys, RJ Behm, B Horstmann Encyclopedia of Electrochemistry: Online, 1-54, 2007 | 8 | 2007 |
| Surface, Structural, and Electrochemical Analysis of High-Voltage Spinel Cathode LiNi0. 5Mn1. 5O4 Evolution Upon Ambient Storage Conditions X Liu, M Maffre, D Tie, NP Wagner, NC Félix, R Azmi, K Stokes, PE Vullum, ... Journal of The Electrochemical Society 170 (10), 100527, 2023 | 5 | 2023 |
| Semantic Resources for Managing Knowledge in Battery Research S Clark, C Battaglia, IE Castelli, E Flores, L Gold, C Punckt, S Stier, P Veit ChemSusChem 18 (16), e202500458, 2025 | 3 | 2025 |