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Philip A Ash

Showing results (21-30 of 26) with videos related to

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The Journal of Physical Chemistry. B|June 27, 2015
Electrochemical and Infrared Spectroscopic Studies Provide Insight into Reactions of the NiFe Regulatory Hydrogenase from Ralstonia eutropha with O2 and COPhilip A Ash, Juan Liu, Nathan Coutard, et al.
Journal of the American Chemical Society|June 24, 2015
Discovery of Dark pH-Dependent H(+) Migration in a [NiFe]-Hydrogenase and Its Mechanistic Relevance: Mobilizing the Hydrido Ligand of the Ni-C IntermediateBonnie J Murphy, Ricardo Hidalgo, Maxie M Roessler, et al.
Chembiochem : a European Journal of Chemical Biology|May 10, 2025
Cyanophenylalanine as an Infrared Probe for Iron-Sulfur Cluster Redox State in Multicenter MetalloenzymesZehui Duan, Jiaao Wei, Stephen B Carr, et al.
Chemical Science|August 18, 2023
Comprehensive structural, infrared spectroscopic and kinetic investigations of the roles of the active-site arginine in bidirectional hydrogen activation by the [NiFe]-hydrogenase 'Hyd-2' from <i>Escherichia coli</i>Rhiannon M Evans, Stephen E Beaton, Patricia Rodriguez Macia, et al.
Chemical Science|November 8, 2021
The crystalline state as a dynamic system: IR microspectroscopy under electrochemical control for a [NiFe] hydrogenasePhilip A Ash, Sophie E T Kendall-Price, Rhiannon M Evans, et al.
Analytical Chemistry|June 9, 2016
Synchrotron-Based Infrared Microanalysis of Biological Redox Processes under Electrochemical ControlPhilip A Ash, Holly A Reeve, Jonathan Quinson, et al.
Pageof 3

Showing results (21-30 of 26) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 26 results.
The Journal of Physical Chemistry. B|June 27, 2015
Electrochemical and Infrared Spectroscopic Studies Provide Insight into Reactions of the NiFe Regulatory Hydrogenase from Ralstonia eutropha with O2 and COPhilip A Ash, Juan Liu, Nathan Coutard, et al.
Journal of the American Chemical Society|June 24, 2015
Discovery of Dark pH-Dependent H(+) Migration in a [NiFe]-Hydrogenase and Its Mechanistic Relevance: Mobilizing the Hydrido Ligand of the Ni-C IntermediateBonnie J Murphy, Ricardo Hidalgo, Maxie M Roessler, et al.
Chembiochem : a European Journal of Chemical Biology|May 10, 2025
Cyanophenylalanine as an Infrared Probe for Iron-Sulfur Cluster Redox State in Multicenter MetalloenzymesZehui Duan, Jiaao Wei, Stephen B Carr, et al.
Chemical Science|August 18, 2023
Comprehensive structural, infrared spectroscopic and kinetic investigations of the roles of the active-site arginine in bidirectional hydrogen activation by the [NiFe]-hydrogenase 'Hyd-2' from <i>Escherichia coli</i>Rhiannon M Evans, Stephen E Beaton, Patricia Rodriguez Macia, et al.
Chemical Science|November 8, 2021
The crystalline state as a dynamic system: IR microspectroscopy under electrochemical control for a [NiFe] hydrogenasePhilip A Ash, Sophie E T Kendall-Price, Rhiannon M Evans, et al.
Analytical Chemistry|June 9, 2016
Synchrotron-Based Infrared Microanalysis of Biological Redox Processes under Electrochemical ControlPhilip A Ash, Holly A Reeve, Jonathan Quinson, et al.
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