Abstract
AbstractThe development of energy storage devices that can endure large and complex deformations is central to emerging wearable electronics. Hydrogels made from conducting polymers give rise to a promising integration of high conductivity and versatility in processing. However, the emergence of conducting polymer hydrogels with a desirable network structure cannot be readily achieved using conventional polymerization methods. Here we present a cryopolymerization strategy for preparing an intrinsically stretchable, compressible and bendable anisotropic polyvinyl alcohol/polyaniline hydrogel with a complete recovery of 100% stretching strain, 50% compressing strain and fully bending. Due to its high mechanical strength, superelastic properties and bi-continuous phase structure, the as-obtained anisotropic polyvinyl alcohol/polyaniline hydrogel can work as a stretching/compressing/bending electrode, maintaining its stable output under complex deformations for an all-solid-state supercapacitor. In particular, it achieves an extremely high energy density of 27.5 W h kg−1, which is among that of state-of-the-art stretchable supercapacitors.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Reference64 articles.
1. Hu, X., Dou, Y., Li, J. & Liu, Z. Buckled structures: fabrication and applications in wearable electronics. Small 15, 1804805 (2019).
2. Kayser, L. V. & Lipomi, D. J. Stretchable conductive polymers and composites based on PEDOT and PEDOT:PSS. Adv. Mater. 31, 1806133 (2019).
3. Li, T., Li, Y. & Zhang, T. Materials, structures, and functions for flexible and stretchable biomimetic sensors. Acc. Chem. Res. 52, 288–296 (2019).
4. Wang, M. et al. Biomimetic solid-state Zn2+ electrolyte for corrugated structural batteries. ACS Nano 13, 1107–1115 (2019).
5. Yun, T. et al. All-transparent stretchable electrochromic supercapacitor wearable patch device. ACS Nano 13, 3141–3150 (2019).
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