Healable Ionoelastomer Designed from Polymeric Ionic Liquid and Vitrimer Chemistry

离子液体 材料科学 环氧乙烷 离子电导率 离子键合 高分子化学 硫化 化学工程 共聚物 有机化学 复合材料 电解质 化学 聚合物 天然橡胶 电极 催化作用 工程类 离子 物理化学
作者
Fengdi Li,Giao Nguyen,Cédric Vancaeyzeele,Frédéric Vidal,Cédric Plesse
出处
期刊:ACS applied polymer materials [American Chemical Society]
卷期号:5 (1): 529-541 被引量:13
标识
DOI:10.1021/acsapm.2c01635
摘要

The growing demand for all-solid flexible, stretchable, and wearable devices has boosted the need for liquid-free and stretchable ionoelastomers. These ionic conducting materials are subjected to repeated deformations during functioning, making them susceptible to damage. Thus, imparting cross-linked materials with healing ability seems particularly promising to improve their durability. Here, a polymeric ionic liquid (PIL) bearing allyl functional groups was synthesized based on the quaternization of N-allylimidazole with a copolymer rubber of poly(epichlorohydrin) and poly(ethylene oxide) (PEO). The resulting PIL was then cross-linked with dynamic boronic ester cross-linkers 2,2'-(1,4-Phenylene)-bis[4-mercaptan-1,3,2-dioxaborolane] (BDB) through thiol-ene "click" photoaddition. PEO dangling chains were additionally introduced for acting as free volume enhancers. The properties of the resulting all-solid PIL networks were investigated by tuning dynamic cross-linkers and dangling chain contents. Adjusting the cross-linker and dangling chain quantities yielded soft (0.2 MPa), stretchable (300%), and highly conducting ionoelastomers (1.6 × 10-5 S·cm-1 at 30 °C). The associative exchange reaction between BDB endowed these materials with vitrimer properties such as healing and recyclability. The recycled materials were able to retain their original mechanical properties and ionic conductivity. These healable PIL networks display a great potential for applications requiring solid electrolytes with high ionic conductivity, healing ability, and reprocessability.
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