Flexible Supercapacitors Based on Stretchable Conducting Polymer Electrodes

Author:

Wang Wen12,Cao Jie12,Yu Jiawen13,Tian Fajuan13,Luo Xiaoyu13,Hao Yiting3,Huang Jiyan3,Wang Fucheng13,Zhou Weiqiang12,Xu Jingkun124,Liu Ximei13,Yang Hanjun13ORCID

Affiliation:

1. Jiangxi Key Laboratory of Flexible Electronics, Flexible Electronics Innovation Institute, Jiangxi Science & Technology Normal University, Nanchang 330013, China

2. School of Chemistry and Chemical Engineering, Jiangxi Science & Technology Normal University, Nanchang 330013, China

3. School of Pharmacy, Jiangxi Science & Technology Normal University, Nanchang 330013, China

4. School of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, China

Abstract

Supercapacitors are widely used in various fields due to their high power density, fast charging and discharging speeds, and long service life. However, with the increasing demand for flexible electronics, integrated supercapacitors in devices are also facing more challenges, such as extensibility, bending stability, and operability. Despite many reports on stretchable supercapacitors, challenges still exist in their preparation process, which involves multiple steps. Therefore, we prepared stretchable conducting polymer electrodes by depositing thiophene and 3-methylthiophene on patterned 304 stainless steel (SS 304) through electropolymerization. The cycling stability of the prepared stretchable electrodes could be further improved by protecting them with poly(vinyl alcohol)/sulfuric acid (PVA/H2SO4) gel electrolyte. Specifically, the mechanical stability of the polythiophene (PTh) electrode was improved by 2.5%, and the stability of the poly(3-methylthiophene (P3MeT) electrode was improved by 7.0%. As a result, the assembled flexible supercapacitors maintained 93% of their stability even after 10,000 cycles of strain at 100%, which indicates potential applications in flexible electronics.

Funder

Science and Technology Project of the Education Department of Jiangxi Province

Key Research and Development Program of Jiangxi Province

Academic and Technical Leader Plan of Jiangxi Provincial Main Disciplines

Jiangxi Key Laboratory of Flexible Electronics

Jiangxi Science & Technology Normal University

Postgraduate Innovation Program of Jiangxi Province

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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