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Electrochemical Reduction of Carbon Dioxide on Cu/CuO Core/Shell Catalysts
Yangchun Lan
, Chao Gai
,
Paul J.A. Kenis
, Jiaxing Lu
Chemical and Biomolecular Engineering
Bioengineering
Mechanical Science and Engineering
Carl R. Woese Institute for Genomic Biology
Micro and Nanotechnology Lab
Materials Research Lab
School of Chemical Sciences
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Keyphrases
Copper(II) Oxide
100%
Formic Acid
100%
Electrochemical Carbon Dioxide Reduction
100%
Core-shell Catalyst
100%
Catalyst Loading
66%
CO2 Electroreduction
66%
Electroreduction
33%
Aqueous Solution
33%
Short Reaction Time
33%
Kinetic Analysis
33%
Electrochemical Performance
33%
Cu-core
33%
Three-electrode Cell
33%
Flow Reactor
33%
Faradaic Efficiency
33%
First-order Reaction
33%
HCOOH Production
33%
CuO Catalyst
33%
Engineering
Electroreduction
100%
Core-Shell
100%
Flow Reactor
33%
Kinetics Analysis
33%
Electrode Cell
33%
First-Order Reaction
33%
Main Product
33%
Rate Constant
33%
Aqueous Solution
33%
Chemical Engineering
Carbon Dioxide
100%