A self-healable and highly stretchable supercapacitor based on a dual crosslinked polyelectrolyte

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作者
Yan Huang
Ming Zhong
Yang Huang
Minshen Zhu
Zengxia Pei
Zifeng Wang
Qi Xue
Xuming Xie
Chunyi Zhi
机构
[1] City University of Hong Kong,Department of Physics and Materials Science
[2] Laboratory of Advanced Materials (MOE),Department of Chemical Engineering
[3] Tsinghua University,undefined
[4] Shenzhen Research Institute,undefined
[5] City University of Hong Kong,undefined
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Superior self-healability and stretchability are critical elements for the practical wide-scale adoption of personalized electronics such as portable and wearable energy storage devices. However, the low healing efficiency of self-healable supercapacitors and the small strain of stretchable supercapacitors are fundamentally limited by conventional polyvinyl alcohol-based acidic electrolytes, which are intrinsically neither self-healable nor highly stretchable. Here we report an electrolyte comprising polyacrylic acid dual crosslinked by hydrogen bonding and vinyl hybrid silica nanoparticles, which displays all superior functions and provides a solution to the intrinsic self-healability and high stretchability problems of a supercapacitor. Supercapacitors with this electrolyte are non-autonomic self-healable, retaining the capacitance completely even after 20 cycles of breaking/healing. These supercapacitors are stretched up to 600% strain with enhanced performance using a designed facile electrode fabrication procedure.
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