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2020-J Power Source-Multifunctional supramolecular gel polymer electrolyte for self-healable and cold-resistant supercapacitor
作者:Qin Gang,Wang Mengxi,... Chen Qiang
關(guān)鍵字:gel polymer electrolyte
論文來源:期刊
具體來源:Journal of Power Sources
發(fā)表時(shí)間:2020年

Multifunctional supramolecular gel polymer electrolyte for self-healable and cold-resistant supercapacitor

Gang Qin*,Mengxiao Wang, Lidan Fan, Xiaohan Fang, DaZhang, Jie Liu, Jing Qin, Liaomin Shi, Jia Yang, Qiang Chen*

https://doi.org/10.1016/j.jpowsour.2020.228602


Abstract: Self-healability and cold-resistance will greatly improve the reliability of an energy-storage device in case of physical damage and subzero environment, which bring higher and higher requirement to electrolyte. Herein, a multifunctional supramolecular gel polymer electrolyte is prepared, which includes the first cross-linking network between PVA and TA through hydrogen bond cross-linking, and the second PVA network via the freezing-thawing cycle. The synergistic effects of two networks endow the gel polymer electrolyte with outstanding mechanical properties such as high tensile strengths (1.19 MPa), elongations (18.35 mm mm?1), self-recovery and excellent self-healability. Moreover, a high conductivity of gel polymer electrolyte is also obtained. A supercapacitor based on the gel polymer electrolyte can significantly restore its electrochemical performances after 10 cutting-healing cycles without external treatment at room temperature. In addition, the supercapacitor presents great controllability and can be tailored into different patterns without property deterioration. Besides, even at ?20 °C, the SC is able to maintain 68.3% of its room temperature capacitance. The investigation offers a facile and versatile strategy to construct an intrinsically self-healable and cold-resistant energy-storage device which has potential applications for portable and wearable electronics, smart apparels or flexible robots, and so on.