Kamiyama Yuji, Tamate Ryota, Fujii Kenta, Ueki Takeshi
Research Center for Functional Materials, National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan.
Graduate School of Life Science, Hokkaido University, Kita 10, Nishi 8, Kita-ku, Sapporo, Hokkaido, 060-0810, Japan.
Soft Matter. 2022 Nov 23;18(45):8582-8590. doi: 10.1039/d2sm00853j.
A new class of ion gels, termed ultrahigh molecular weight (UHMW) gels, formed by physical entanglement of ultrahigh molecular weight polymers in ionic liquids, are synthesised using facile one step radical polymerisation with significantly low initiator conditions, and exhibit superior mechanical characteristics such as stretchability, recyclability, and room temperature self-healing ability. In this study, UHMW gels are synthesised using various combinations of monomer and IL structures, and the effect of their chemical structures on the physicochemical properties of UHMW gels are thoroughly investigated. UHMW polymers are prepared for all combinations of ILs and monomers used in this study, indicating the wide applicability of this fabrication strategy. The structure-property relationships between chemical structures and mechanical properties of UHMW gels are investigated in detail. Furthermore, the differences in self-healing efficiency of UHMW gels depending on the chemical structure is discussed in terms of individual polymer conformation and polymer-polymer interaction based on molecular dynamics simulations.
一类新型的离子凝胶,称为超高分子量(UHMW)凝胶,由超高分子量聚合物在离子液体中物理缠结形成,通过简便的一步自由基聚合在显著低引发剂条件下合成,并表现出优异的机械特性,如拉伸性、可回收性和室温自修复能力。在本研究中,使用单体和离子液体结构的各种组合合成了超高分子量凝胶,并深入研究了它们的化学结构对超高分子量凝胶物理化学性质的影响。针对本研究中使用的离子液体和单体的所有组合制备了超高分子量聚合物,表明这种制备策略具有广泛的适用性。详细研究了超高分子量凝胶化学结构与机械性能之间的结构-性能关系。此外,基于分子动力学模拟,从单个聚合物构象和聚合物-聚合物相互作用的角度讨论了超高分子量凝胶自修复效率随化学结构的差异。