Issue 25, 2020

Zinc ion trapping in a cellulose hydrogel as a solid electrolyte for a safe and flexible supercapacitor

Abstract

A flexible zinc-ion hybrid supercapacitor (ZHS) was constructed using a solid-state cellulose hydrogel electrolyte containing a high concentration of ZnCl2. This biodegradable cellulose hydrogel electrolyte can afford a wide electrochemical potential window and excellent ionic conductivity, resulting in a ZHS with an extremely high capacity of 193 mA h g−1, an energy density of 192 W h kg−1, and a power density of 16 976 W kg−1. The flexible ZHS also shows excellent stability and can work at low temperature of −20 °C. This work progresses the field of Zn-based electrochemical energy storage devices and gives a meaningful guide for the design of solid-state electrolytes.

Graphical abstract: Zinc ion trapping in a cellulose hydrogel as a solid electrolyte for a safe and flexible supercapacitor

Supplementary files

Article information

Article type
Communication
Submitted
25 Apr 2020
Accepted
01 Jun 2020
First published
01 Jun 2020

J. Mater. Chem. A, 2020,8, 12314-12318

Zinc ion trapping in a cellulose hydrogel as a solid electrolyte for a safe and flexible supercapacitor

L. Yang, L. Song, Y. Feng, M. Cao, P. Zhang, X. Zhang and J. Yao, J. Mater. Chem. A, 2020, 8, 12314 DOI: 10.1039/D0TA04360E

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