Polysaccharide-modified conductive hydrogel for flexible electronic devices

Chongkai Ji, Lijie Li, Yulin Nie, Rang Ping, Jiong Peng*, Xin Li*

*此作品的通讯作者

科研成果: 期刊稿件会议文章同行评审

摘要

In recent years, conductive hydrogels, as an ideal flexible material, have quite broad application prospects in various flexible electronics fields, such as flexible supercapacitors, flexible batteries, and flexible sensors. However, mechanical stress such as stretching, fracture, and compression will affect the performance of conductive hydrogel during the application, which limits its further application. Polysaccharides, such as cellulose and chitosan, are widely distributed and easy-to-obtain biological macromolecules, which contain a large number of polar functional groups (carboxyl, amino, etc.), which can be formed with polymer hydrogel molecular chains, thereby improving the performance of the hydrogel. Herein, we prepared a kind of conductive hydrogel with high toughness, high conductivity, and self-adhesion by introducing carboxymethyl chitosan and maltose to induce a dynamic Schiff base reaction in the hydrogel. It is conceived that this study proposed a potential approach for the progress of conductive hydrogels in various flexible electronics fields.

源语言英语
文章编号012030
期刊Journal of Physics: Conference Series
2563
1
DOI
出版状态已出版 - 2023
活动2023 3rd International Conference on Energy Engineering, New Energy Materials and Devices, NEMD 2023 - Virtual, Online, 中国
期限: 24 3月 202326 3月 2023

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