The future of low-temperature carbon dioxide electrolysis depends on solving one basic problem JA Rabinowitz, MW Kanan Nature Communications 11 (1), 5231, 2020 | 444 | 2020 |
Microstructural origin of locally enhanced CO2 electroreduction activity on gold RG Mariano, M Kang, OJ Wahab, IJ McPherson, JA Rabinowitz, ... Nature Materials 20 (7), 1000-1006, 2021 | 157 | 2021 |
Thousand-fold increase in O2 electroreduction rates with conductive MOFs RG Mariano, OJ Wahab, JA Rabinowitz, J Oppenheim, T Chen, PR Unwin, ... ACS Central Science 8 (7), 975-982, 2022 | 55 | 2022 |
Improving the energy efficiency of CO electrolysis by controlling Cu domain size in gas diffusion electrodes JA Rabinowitz, DS Ripatti, RG Mariano, MW Kanan ACS Energy Letters 7 (11), 4098-4105, 2022 | 10 | 2022 |
The future of low-temperature carbon dioxide electrolysis depends on solving one basic problem. Nat. Commun. 11, 5231 JA Rabinowitz, MW Kanan | 10 | 2020 |
Non-natural amino acid peptide microarrays to discover Ebola virus glycoprotein ligands JA Rabinowitz, JC Lainson, SA Johnston, CW Diehnelt Chemical Communications 54 (12), 1417-1420, 2018 | 9 | 2018 |
Rapid prototyping of lab-scale electrolysis cells using stereolithography and electroless plating JG Wright, BP Charnay, JA Rabinowitz, RG Mariano, MW Kanan Device 1 (2), 2023 | 2 | 2023 |
Continuum Model for Optimizing CO Reduction Gas Diffusion Electrodes KR Disselkoen, JA Rabinowitz, A Mani, MW Kanan ACS Sustainable Chemistry & Engineering 12 (19), 7235-7245, 2024 | | 2024 |