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A controllable preparation of two-dimensional cobalt oxalate-based nanostructured sheets for electrochemical energy storage

A controllable preparation of two-dimensional cobalt oxalate-based nanostructured sheets for electrochemical energy storage

Authors :
Nuo Lin
Guangxun Zhang
Fancheng Sun
Xudong Chen
Huan Pang
Qing Li
Yang Bai
Shasha Zheng
Maoying Peng
Source :
Chinese Chemical Letters. 33:3249-3254
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

Well-defined two-dimensional (2D) cobalt oxalate (CoC2O4•2H2O) nanosheets exhibit more excellent property than common bulk cobalt oxalate due to high specific surface areas and high-efficient transport of ion and electron. However, the delicate control of the 2D morphology of CoC2O4•2H2O during their synthesis remains challenging. Herein, 2D CoC2O4•2H2O nanosheets (M1), grown by straightforward chemical precipitation, can be tuned from three-dimensional (3D) structure during their synthesis with no templates or capping agents. This control is obtained by rationally changing the ratio of reactants with ethylene glycol as solvent. Moreover, Co3O4/CoC2O4 composites (M1-250) have been fabricated through low-temperature thermal treatment of the M1 precursor in air, which possess porous surfaces with the 2D morphology maintained. Benefiting from the porous surfaces, more redox-active sites and better electrical conductivity of Co3O4, the constructed M1-250//AC aqueous device manifest improved kinetics of the electrochemistry process with energy density of 27.9 Wh/kg at 550.7 W/kg and good cycling stability with sustaining 73.0 mAh/g after 5000 cycles.

Details

ISSN :
10018417
Volume :
33
Database :
OpenAIRE
Journal :
Chinese Chemical Letters
Accession number :
edsair.doi...........87b4db9b474d244c51725831e0f3c313
Full Text :
https://doi.org/10.1016/j.cclet.2021.10.075