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Updated: Sep 25, 2025

Solid-state Graft Copolymer Electrolytes for Lithium Battery Applications
Published on: August 12, 2013
High ionic conduction, toughness and self-healing poly(ionic liquid)-based electrolytes enabled by synergy between
Fu Jie Yang1, Qing Feng Liu1, Xiao Bing Wu1
1College Chemistry and Chemical Engineering, Zhongkai University of Agriculture and Engineering Guangzhou 510275 P. R. China yangfujie580@163.com.
Abstract:
Polymer electrolytes offer great potential for emerging wearable electronics. However, the development of a polymer electrolyte that has high ionic conductivity, stretchability and security simultaneously is still a considerable challenge. Herein, we reported an effective approach for fabricating high-performance poly(ionic liquids) (PILs) copolymer (denoted as PIL-BA) electrolytes by the interaction between flexible units (butyl acrylate) and counteranions. The introduction of butyl acrylate units and bis(trifluoromethane-sulfonyl)imide (TFSI-) counteranions can significantly enhance the mobility of polymer chains, resulting in the effective improvement of ion transport, toughness and self-healability. As a result, the PIL-BA copolymer-based electrolytes containing TFSI- counterions achieved the highest ionic conductivity of 2.71 ± 0.17 mS cm-1, 1129% of that of a PIL homopolymer electrolyte containing Cl- counterions. Moreover, the PIL-BA copolymer-based electrolytes also exhibit ultrahigh tensile strain of 1762% and good self-healable capability. Such multifunctional polymer electrolytes can potentially be applied for safe and stable wearable electronics.
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