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Barriers of Electrochemical CO
2
Reduction on Transition Metals
Chuan Shi
, Karen Chan
,
Jong Suk Yoo
, Jens K. Nørskov
Department of Chemical Engineering
Stanford University
SLAC National Accelerator Laboratory
Research output
:
Contribution to journal
›
Article
›
peer-review
170
Scopus citations
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2
Reduction on Transition Metals'. Together they form a unique fingerprint.
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Chemistry
Carbon Dioxide Reduction
100%
Transition Metals
100%
Proton
33%
Reduction
33%
Dioxygen
33%
Surface
33%
Carbon Dioxide
33%
Solvent
33%
Carbon
33%
Energy Barrier
33%
Gibbs Free Energy
33%
Methane
33%
Reaction Step
33%
Density Functional Theory
33%
Reaction Activation Energy
33%
Electron Transport
33%
Electron Transfer
33%
Physics
Transition Element
100%
Transition Metal
100%
Carbon Dioxide
100%
Electron
25%
Model
25%
Proton
25%
Increasing
25%
Impact
25%
Transferring
25%
Free Energy
25%
Oxygen
25%
Activation Energy
25%
Renewable Energy
25%
Methane
25%
Chemical Engineering
Transition Metal
100%
Carbon Dioxide Reduction
50%
Carbon
50%
Methane
50%
Oxygen
50%
Gibbs Free Energy
50%
Material Science
Carbon Dioxide
100%
Transition Metal
100%
Surface
25%
Density
25%
Activation Energy
25%
Electron Transfer
25%
Solvent
25%