Department of Materials Science and Engineering, Clemson University, Clemson, SC, 29634, USA.
Small. 2022 Jun;18(24):e2201952. doi: 10.1002/smll.202201952. Epub 2022 May 13.
Electrically accelerated self-healable poly(ionic liquids) copolymers that exhibit resistor-capacitor (RC) circuit properties are developed. At low alternating current (AC) frequencies these materials behave as a resistor (R), whereas at higher frequencies as a capacitor (C). These properties are attributed to a combination of dipolar and electrostatic interactions in (1-[(2-methacryloyloxy)ethyl]-3-butylimidazolium bis(trifluoromethyl-sulfonyl)imide) copolymerized with methyl methacrylate (MMA) monomers to form p(MEBIm-TSFI/MMA)] copolymers. When the monomer molar ratio (MEBIm-TSFI:MMA) is 40/60, these copolymers are capable of undergoing multiple damage-repair cycles and self-healing is accelerated by the application of alternating 1.0-4.0 V electric field (EF). Self-healing in the absence of EFs is facilitated by van der Waals (vdW) interactions, but the application of AC EF induces back and forth movement of charges against the opposing force that result in dithering of electrostatic dipoles giving rise to interchain physical crosslinks. Electrostatic inter- and intrachain interactions facilitated by copolymerization of ionic liquid monomers with typically dielectric acrylic-based monomers result in enhanced cohesive energy densities that accelerate the recovery of vdW forces facilitating self-healing. Incorporating ionic liquids into commodity polymers offers promising uses as green conducting solid polyelectrolytes in self-healable energy storage, energy-harvesting devices, and many other applications.
开发了具有电阻-电容 (RC) 电路特性的电加速自修复聚离子液体共聚物。在低交流 (AC) 频率下,这些材料表现为电阻 (R),而在更高频率下表现为电容 (C)。这些特性归因于在 (1-[(2-丙烯酰氧基)乙基]-3-丁基咪唑𬭩双(三氟甲磺酰基)亚胺) 与甲基丙烯酸甲酯 (MMA) 单体共聚形成的 (p(MEBIm-TSFI/MMA)] 共聚物中偶极和静电相互作用的结合。当单体摩尔比 (MEBIm-TSFI:MMA) 为 40/60 时,这些共聚物能够经历多次损伤-修复循环,并且通过施加 1.0-4.0 V 的交流电场 (EF) 来加速自修复。在没有 EF 的情况下,自修复是由范德华 (vdW) 相互作用促进的,但是交流 EF 的施加会导致电荷来回移动,从而产生静电力偶极的摆动,导致链间物理交联。通过将离子液体单体与通常具有介电性质的丙烯酸基单体共聚,促进了离子内和离子间的相互作用,从而提高了内聚能密度,加速了范德华力的恢复,从而促进了自修复。将离子液体掺入商品聚合物中,有望作为绿色导电固体聚电解质用于自修复储能、能量收集器件和许多其他应用。