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Electrochemical Kinetics of Layered Manganese Phosphate via Interfacial Polypyrrole Chemical Binding.

Authors :
Du, Jia‐Lin
Bao, Xu
Zhang, Wei‐Bin
Zhang, Lun
Guo, Yao‐Wen
Zhou, Xia
Zhang, Xian‐Li
Chai, Shan‐Shan
Guo, Shao‐Bo
Han, Xiong‐Wei
Long, Jianping
Source :
ChemElectroChem; 4/11/2022, Vol. 9 Issue 7, p1-10, 10p
Publication Year :
2022

Abstract

The major limitation of low‐cost and high‐safety aqueous manganese‐based materials for electrochemical energy storage is largely hampered by their poor cyclic stability, usually caused by the manganese dissolution and interfacial kinetics. Herein, we synthesized a manganese phosphate material via interfacial polypyrrole chemical binding, with unique structural properties for aqueous supercapacitor application. It exhibited higher specific capacitance, remarkable rate performance and better cycle stability compared to bare manganese phosphate. In contrast with interfacial polypyrrole coating on manganese phosphate nanosheets, the polypyrrole could form a Mn−N bond with the manganese phosphate, indicating stable chemical binding. Thus, the appropriate interfacial chemical binding is an efficient strategy to improve the nanostructure stability and electrochemical kinetics of manganese‐based materials for aqueous electrochemical energy storage. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
21960216
Volume :
9
Issue :
7
Database :
Complementary Index
Journal :
ChemElectroChem
Publication Type :
Academic Journal
Accession number :
156277798
Full Text :
https://doi.org/10.1002/celc.202101574