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Breaking Activity-Stability Trade-off in Chlorine Electrolysis via Grain Boundary Engineering

delete2026-05-09
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PRE
AI
J
Jingyu Gao
X
Xiaoxuan Min
Z
Zhen Zhang
Y
Yijun Liu
B
Bingyan Shi
M
Meng Liu
J
Jingqi Chi
J
Jun Xing
Z
Zexing Wu
Y
Ying Deng *
Z
Zhenyu Xiao *
汪磊 cover
汪磊 (Lei Wang) *
DOI:10.1016/j.apcatb.2026.126929delete
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Abstract

Abstract

En 中文
• The grain boundary (GB) engineering in a non-precious Co3O4 catalyst breaks the CER’s intrinsic activity-stability trade-off. • GB-induced compressive strain lowers the rate-determining step (Volmer-Krishtalik) barrier and increases the Co dissolution energy. • The GB-Co3O4 catalyst exhibits ultralow overpotential of 36 mV and demonstrates ultralow voltage decay rate of 0.8mVh−1.
Keywords:
Grain boundary engineering
Co3O4 catalyst
Chlorine electrolysis
Activity-stability trade-off
Compressive strain

Journal

A
Applied Catalysis B: Environment and Energy
IF:
0
Papers:
839
Citations:
1

Organization

Q
qingdao university of science and technology
Scholars:
4.0K
Papers: 1.2K
Citations: 1
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