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Energy & Environmental Science
Article . 2025 . Peer-reviewed
License: Royal Society of Chemistry Licence to Publish
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Anti-freezing hydrogel electrolyte with a regulated hydrogen bond network enables high-rate and long cycling zinc batteries

Authors: Shao-Jie Guo; Meng-Yu Yan; Dong-Ming Xu; Pan He; Kai-Jian Yan; Jie-Xin Zhu; Yong-Kun Yu; +3 Authors
Shao-Jie Guo; Meng-Yu Yan; Dong-Ming Xu; Pan He; Kai-Jian Yan; Jie-Xin Zhu; Yong-Kun Yu; Ze-Ya Peng; Yan-Zhu Luo; Fei-Fei Cao;
doi: 10.1039/d4ee02772h
Anti-freezing hydrogel electrolyte with a regulated hydrogen bond network enables high-rate and long cycling zinc batteries
Abstract
1,2-Propylene glycol modulates the hydrogen bond network and solvation sheath structure of polyacrylamide hydrogel electrolytes, reducing solvent–solvent interactions, promoting uniform Zn2+ deposition, and enhancing AZIB cycling stability.
Related Organizations
- University College London United Kingdom
- Huazhong Agricultural University China (People's Republic of)
- State Key Laboratory of Advanced Technology For Materials Synthesis and Processing China (People's Republic of)
- Wuhan Polytechnic University China (People's Republic of)
- Wuhan University of Technology China (People's Republic of)

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