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Pyrochlore electrocatalysts for efficient alkaline water electrolysis
Javier Parrondo
, Morgan George
, Christopher Capuano
, Katherine E. Ayers
, Vijay Ramani
Department of Energy, Environmental & Chemical Engineering
Washington University in St. Louis
Research output
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Contribution to journal
›
Article
›
peer-review
116
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Scopus citations
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Chemistry
Reaction Path
100%
Bismuth
100%
Metal Oxide
100%
Electrocatalyst
100%
Solid State Reaction
100%
Transition Metal
100%
electrode
100%
Catalyst Activity
100%
Oxygen Reduction Reaction
100%
Electrocatalytic Activity
100%
Salting Out
100%
Keyphrases
Pyrochlore
100%
Electrocatalyst
100%
Alkaline Water Electrolysis
100%
Oxygen Evolution Reaction
80%
Reaction Activity
50%
Specific Activity
30%
Lead Ruthenate
30%
IrO2
20%
Low Oxygen
10%
Occupancy
10%
Catalytic Activity
10%
Solid State
10%
Crystallization
10%
Reaction Pathway
10%
Intermediate Species
10%
B-site
10%
D Electrons
10%
Pyrochlore Structure
10%
A2B2O7
10%
Observed Trends
10%
Oxygen Species
10%
Periodic Table
10%
Solid-state Reaction
10%
Oxygen Intermediates
10%
Alkaline Media
10%
Oxygen Reduction Reaction
10%
Rotating Disk Electrode
10%
Electrocatalytic Activity
10%
3d Orbital
10%
Low Overpotential
10%
IrO2 Catalyst
10%
Trends in Activity
10%
Adsorbed Oxygen Species
10%
Reaction Stability
10%
Electrically Conducting
10%
Bonding Strength
10%
Iridates
10%
Bismuth Ruthenate
10%
Osmate
10%
Conducting Metal Oxides
10%
Ruthenates
10%
Material Science
Electrocatalysts
100%
Oxygen Evolution
100%
Alkaline Water Electrolysis
100%
Metal Oxide
12%
Bismuth
12%
Transition Metal
12%
Catalyst Activity
12%
Rotating Disc Electrode
12%
Oxygen Reduction Reaction
12%