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Tailoring Active Components of Nanoparticles via Sequential In Situ Exsolution for High-Performance Solid Oxide CO2 Electrolyzers (Adv. Energy Mater. 30/2026)

delete2026-08-13
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OA
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Y
Yao Luo
K
Kai Ma
J
Jietao Wang
Y
Yao Wang
T
Tong Liu
M
Mingyue Ding
DOI:10.1002/aenm.71270delete
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Abstract

Abstract

En 中文
CO2 Electrolysis The in-situ sequential exsolution of transition metals (Cu and Co) on perovskite oxide cathodes for solid oxide electrolysis cells can be precisely modulated by tuning the oxygen partial pressure gradient. This unique dual-exsolution architecture, with its distinctive physicochemical properties, creates a durable and active reaction interface for highly efficient CO2 electrolysis. More in article number e71074, Yao Wang, Tong Liu, Mingyue Ding, and co-workers.
Keywords:
CO2 electrolysis
in situ exsolution
perovskite oxide
SOEC
surface-active nanoparticles
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Advanced Energy Materials cover
Advanced Energy Materials
IF:
26
Papers:
10.0K
Citations:
15.7W

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W
wuhan institute of technology
Scholars:
9.8K
Papers: 6.4K
Citations: 11
W
wuhan university
Scholars:
7.8W
Papers: 5.7W
Citations: 70
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