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A highly active, CO
2
-tolerant electrode for the oxygen reduction reaction
Yu Chen
, Seonyoung Yoo
,
Yong-Man Choi
, Jun Hyuk Kim
, Yong Ding
, Kai Pei
, Ryan Murphy
, Yanxiang Zhang
, Bote Zhao
, Weilin Zhang
, Huijun Chen
, Yan Chen
, Wei Yuan
, Chenghao Yang
, Meilin Liu
*
*
Corresponding author for this work
Institute of Photonic System
Research output
:
Contribution to journal
›
Article
›
peer-review
288
Scopus citations
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2
-tolerant electrode for the oxygen reduction reaction'. Together they form a unique fingerprint.
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Keyphrases
Oxygen Reduction Reaction
100%
Degradation Rate
100%
Solid Oxide Fuel Cell
100%
Highly Active
100%
CO2 Tolerant
100%
In Situ
50%
Surface-enhanced Raman Spectroscopy
50%
Poisoning
50%
Density Functional Calculations
50%
Ambient Air
50%
Impedance Spectroscopy
50%
Vol%
50%
Double Perovskite
50%
CO Tolerance
50%
Raman Spectroscopy Analysis
50%
Electrolytic Cell
50%
Actual Conditions
50%
Area Specific Resistance
50%
Fast Degradation
50%
High-capacity Cathodes
50%
Cell Separation
50%
Excellent Durability
50%
ORR Activity
50%
ORR Kinetics
50%
Kinetic Durability
50%
Oxygen Exchange
50%
Symmetrical Cell
50%
Oxygen Electrochemistry
50%
Gas Separation Membrane
50%
Electrolysis Gases
50%
Engineering
Solid Oxide Fuel Cell
100%
Oxygen Reduction Reaction
100%
Degradation Rate
100%
Fits and Tolerances
50%
Ambient Air
50%
Electrolysis Cell
50%
Membranes Separation
50%
Separation Gas
50%
Chemistry
Oxygen Reduction Reaction
100%
electrode
100%
Carbon Dioxide
100%
Solid Oxide Fuel Cell
33%
Degradation Rate
33%
Surface Enhanced Raman Spectroscopy
16%
Electrochemistry
16%
Dielectric Spectroscopy
16%
Membranes Separation
16%
Density Functional Theory
16%
Material Science
Carbon Dioxide
100%
Cathode
66%
Oxide Compound
33%
Density
16%
Dielectric Spectroscopy
16%
Surface-Enhanced Raman Spectroscopy
16%
Surface (Surface Science)
16%
Chemical Engineering
Gas Separation Membrane
16%