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Oxygen vacancy-enriched spherical CoFe2Ox derived from hard-template strategy: Regulating PMS activation pathway for the efficient elimination of volatile dimethylamine

delete2026-08-06
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PRE
AI
F
Fei Yan
L
Luao Wu
G
Guangle Zhou
L
Lina Wei
汪军 (Jialei Wang)
C
Chaoran Song
W
Wenhui You
P
Ping Li
王力东 cover
王力东 (Lidong Wang) *
DOI:10.1016/j.apsusc.2026.168061delete
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Abstract

Abstract

En 中文
• Rough spherical Ov-rich Fenton-like catalysts were fabricated by hard-template method and chemical reduction. • Dimethylamine could be mineralized to non-toxic carbon dioxide, water and NO3−. • Rich oxygen vacancies and bimetallic synergism promoted the activation of PMS. • The catalyst could adsorb DMA and PMS, thus shortening the distance between DMA and ROS.
Keywords:
Carbon sphere
Hard template
Oxygen vacancies
Dimethyl amine
Bimetallic oxides

Journal

Applied Surface Science cover
Applied Surface Science
IF:
6.9
Papers:
6.1W
Citations:
19.4W

Organization

N
north china electric power university
Scholars:
2.4W
Papers: 1.6W
Citations: 16
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