Infrared Spectroscopy During Electrocatalytic Turnover Reveals the Ni‐L Active Site State During H2 Oxidation by a NiFe Hydrogenase R Hidalgo, PA Ash, AJ Healy, KA Vincent Angewandte Chemie International Edition 54 (24), 7110-7113, 2015 | 156 | 2015 |
Discovery of Dark pH-Dependent H+ Migration in a [NiFe]-Hydrogenase and Its Mechanistic Relevance: Mobilizing the Hydrido Ligand of the Ni-C Intermediate BJ Murphy, R Hidalgo, MM Roessler, RM Evans, PA Ash, WK Myers, ... Journal of the American Chemical Society 137 (26), 8484-8489, 2015 | 79 | 2015 |
Proton transfer in the catalytic cycle of [NiFe] hydrogenases: insight from vibrational spectroscopy PA Ash, R Hidalgo, KA Vincent ACS catalysis 7 (4), 2471-2485, 2017 | 78 | 2017 |
Comparison of carbon materials as electrodes for enzyme electrocatalysis: hydrogenase as a case study J Quinson, R Hidalgo, PA Ash, F Dillon, N Grobert, KA Vincent Faraday Discussions 172, 473-496, 2014 | 29 | 2014 |
Synchrotron-based infrared microanalysis of biological redox processes under electrochemical control PA Ash, HA Reeve, J Quinson, R Hidalgo, T Zhu, IJ McPherson, ... Analytical chemistry 88 (13), 6666-6671, 2016 | 22 | 2016 |
The crystalline state as a dynamic system: IR microspectroscopy under electrochemical control for a [NiFe] hydrogenase PA Ash, SET Kendall-Price, RM Evans, SB Carr, AR Brasnett, S Morra, ... Chemical Science 12 (39), 12959-12970, 2021 | 12 | 2021 |
Protein film infrared electrochemistry demonstrated for study of H2 oxidation by a [NiFe] hydrogenase PA Ash, R Hidalgo, KA Vincent JoVE (Journal of Visualized Experiments), e55858, 2017 | 7 | 2017 |
Infrared spectroelectrochemical study of E. coli NiFe hydrogenase 1 R Gonzalez University of Oxford, 2016 | | 2016 |
New insight into the mechanism of NiFe hydrogenases from IR spectroscopy coupled with protein film electrochemistry P Ash, R Hidalgo, M Chung, K Vincent | | 2014 |
Calculations of chemical equilibrium with symbolic computation R Hidalgo Revista de Ciencia y Tecnología 29 (1), 2013 | | 2013 |