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Bioinspired catalyst/electrode system for hydrogen production
Federico Zipoli
, Morrel H. Cohen
,
Roberto Car
, Annabella Selloni
Chemistry
Physics
Princeton Institute for Computational Science and Engineering
Princeton Materials Institute
Research output
:
Contribution to journal
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Conference article
›
peer-review
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Keyphrases
H-cluster
100%
Electrode System
100%
Bioinspired Catalysts
100%
Hydrogen Production
100%
Catalyst Electrode
100%
Pyrite
66%
H2 Production
66%
Diiron
66%
Iron Hydrogenase
66%
High Efficiency
33%
Active Sites
33%
In Vacuo
33%
First-principles Molecular Dynamics Simulations
33%
Redox
33%
Biogeochemical Processes
33%
Water Environment
33%
Geochemical Processes
33%
Pyrite Electrode
33%
Acidic Water
33%
Surface Electrodes
33%
Electrode Materials
33%
Hydrogen Evolution Reaction
33%
Iron-sulfur
33%
Enzyme Active Site
33%
Stable Link
33%
Chemistry
Hydrogen Production
100%
Hydrogenase
100%
Pyrite
100%
Catalyst
100%
Iron Ore
100%
First Principle
50%
Electrode Material
50%
electrode
50%
Molecular Dynamics Simulation
50%
Hydrogen
50%
Physics
Hydrogen Production
100%
electrode
100%
First Principle
50%
Molecular Dynamics
50%
Hydrogen Evolution Reaction
50%
Enzyme
50%
Material Science
Catalyst
100%
Hydrogen
100%
Hydrogenase
100%
Hydrogen Evolution
50%