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Synthesis and Electrochemical Performance of Co3S4@Zn0.5Co0.5Mn2O4 Nanocomposites and a Self-Powered Electrocatalytic System for Energy-Saving Hydrolysis

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成果类型:
期刊论文
作者:
Tan, Zicong;Fan, Jincheng*;Huang, Ting;Hu, Risheng;Fang, Yifan;...
通讯作者:
Fan, Jincheng;Chao, ZS
作者机构:
[Liu, Haiou; Tan, Zicong; Fan, Jincheng; Chao, Zisheng; Luo, Wenbin; Chao, ZS; Fang, Yifan; Huang, Ting; Fan, JC; Hu, Risheng] Changsha Univ Sci & Technol, Coll Mat Sci & Engn, Changsha 410114, Hunan, Peoples R China.
通讯机构:
[Chao, ZS ; Fan, JC] C
Changsha Univ Sci & Technol, Coll Mat Sci & Engn, Changsha 410114, Hunan, Peoples R China.
语种:
英文
关键词:
zeolitic imidazolate frameworks;etching;asymmetric supercapacitors;hydrolysis;solar cells
期刊:
ACS Applied Energy Materials
ISSN:
2574-0962
年:
2025
卷:
8
期:
14
页码:
10682–10694
基金类别:
Natural Science Foundation of Hunan Province [2024JJ5010]; Natural Science Foundation of Hu'nan Province, China; Natural Science Foundation of Changsha [Kq2402008]; Province, China
机构署名:
本校为第一且通讯机构
院系归属:
材料科学与工程学院
摘要:
Herein, we report Co 3 S 4 @Zn 0.5 Co 0.5 Mn 2 O 4 (CS-ZCMO) nanocomposites formed by etching a ZnCo metal–organic framework (ZnCo-ZIF) precursor to form the Zn 0.5 Co 0.5 Mn 2 O 4 spinel structure and compositing it with Co 3 S 4 . This ZIF-derived nanosheet constitutes a reticular structure that enhances the interfacial contact with electrolyte ions and exhibits excellent electrochemical properties. With CS-ZCMO as electrode materials for a supercapacitor, the specific capacitance reached 3006 F/g at a current density of 1 A/g. The assembled...

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