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Updated: Jun 20, 2025

Zinc-Sponge Battery Electrodes that Suppress Dendrites
Published on: September 29, 2020
Zn3V2O7(OH)2·2H2O/MXene cathode with fast ion diffusion for highly durable zinc ion batteries
Wanting Su1, Man Lang1, Weiwei Li1
1The Education Ministry Key Lab of Resource Chemistry, Shanghai Key Laboratory of Rare Earth Functional Materials, College of Chemistry and Materials Science, Shanghai Normal University Shanghai 200234 P. R. China li_huili@shnu.edu.cn.
Abstract:
V-based materials are considered promising candidates as cathode materials for zinc ion batteries (ZIBs). However, the inherent low conductivity of V-based compounds leads to the sluggish diffusion kinetics of Zn2+ and serious cycling capacity degradation of ZIBs. Herein, 1D Zn3V2O7(OH)2·2H2O (ZVO) nanowires were grown on monodisperse 2D Ti3C2T MXene nanosheets via a facile microwave-assisted method. The introduction of Ti3C2T MXenes effectively improved the conductivity and hydrophilicity of ZVO. Furthermore, the Zn2+ diffusion coefficient of ZVO/Ti3C2T composites was enhanced to 10-7-10-8 cm2 s-1, which was superior to that of pure ZVO nanowires (10-8-10-10 cm2 s-1) and other previously reported typical V-based cathodes. The ZIBs based on the ZVO/Ti3C2T cathode possessed an excellent discharge specific capacity of 215.2 mAh g-1 at 0.1 A g-1 and cycling stability (84% retention over 14 000 cycles at 10 A g-1). Moreover, the flexible Zn//ZVO/Ti3C2T ZIBs using a gel electrolyte still exhibited good cycling stability and rate performance.
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