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2020-ACS AMI-Polyaniline-Decorated Supramolecular Hydrogel with Tough, Fatigue-Resistant, and Self-Healable Performances for All-In-One Flexible Supercapacitors
来源:陈强研究员、PI个人网站 发布日期:2020-02-18
作者:Jia Yang#,Xianqiang Yu,#Gengzhi Sun*, Qiang Chen*, et al.
关键字:all-in-one flexible supercapacitor, polyaniline decoration, supramolecular hydrogel electrolyte, multiple hydrogen bonds ,fatigue-resistance
论文来源:期刊
具体来源:ACS Appl. Mater. Interfaces
发表时间:2020年

Polyaniline-Decorated Supramolecular Hydrogel with Tough, Fatigue-Resistant, and Self-Healable Performances for All-In-One Flexible Supercapacitors

Jia Yang#,Xianqiang Yu#, Xiangbin Sun,Qiong Kang,Lin Zhu,Gang Qin,Aiguo Zhou,Gengzhi Sun*, Qiang Chen*

ACS Appl. Mater. Interfaces 2020 DOI:10.1021/acsami.9b20573


It is a challenge to realize high strength, toughness, and energy storage, as well as excellent capacitive self-recovery, fatigue-resistant, and self-healing performances simultaneously in a single all-in-one supercapacitor aiming for wearable electronics. Herein, based on the self-crosslinking and molecular template, a supramolecular poly(vinyl alcohol)/poly (N-hydroxyethyl acrylamide) (PVA/PHEA) hydrogel electrolyte (HGE) decorated by polyaniline (PANI) was prepared by in situ rapid polymerization of high-concentration aniline on the PVA/PHEA gel containing H2SO4. The multiple hydrogen bonds, rapid polymerization, and decoration endowed PANI-decorated PVA/PHEA HGE-based all-in-one flexible supercapacitor with the integrated high performances, which include high specific capacitance, good cycling stability, high strength, excellent toughness, rapid self-recovery, excellent fatigue-resistant, and self-healing capabilities, as well as high capacitance retention during or after the large deformations or after the self-healing. Thus, the current work presents a novel and promising strategy to design the integrated high-performance supercapacitors aiming for wearable electronics.


Link:https://pubs.acs.org/doi/full/10.1021/acsami.9b20573

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