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Solvent nanostructure, the solvophobic effect and amphiphile self-assembly in ionic liquids

机译:离子液体中的溶剂纳米结构,疏溶剂作用和两亲性自组装

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摘要

The ability of ionic liquids (ILs) to support amphiphile self-assembly into a range of mesophase structures has been established as a widespread phenomenon. From the ILs evaluated as self-assembly media, the vast majority have supported some lyotropic liquid crystal phase formation. Many neat ionic liquids have been shown to segregate into polar and non-polar domains to form a nanostructured liquid. A very strong correlation between the nanostructure of the ionic liquid and its characteristics as an amphiphile self-assembly solvent has been found. In this review we discuss ionic liquids as amphiphile self-assembly media, and identify trends that can be used to distinguish which ionic liquids are likely to have good promotion properties as self-assembly media. In particular these trends focus on the nanostructure of neat ionic liquids, their solvent cohesive energy density, and the related solvophobic effect. We forecast that many more ILs will be identified as amphiphile self-assembly solvents in the future.
机译:离子液体(IL)支持两亲物自组装成一系列中间相结构的能力已被确定为一种普遍现象。从被评估为自组装介质的IL中,绝大多数支持了溶致液晶相的形成。已经显示出许多纯离子液体会分离成极性和非极性区域,从而形成纳米结构的液体。已经发现离子液体的纳米结构与其作为两亲性自组装溶剂的特性之间具有非常强的相关性。在这篇综述中,我们讨论了作为两亲性自组装介质的离子液体,并确定了可用于区分哪些离子液体作为自组装介质可能具有良好促进性能的趋势。特别地,这些趋势集中于纯离子液体的纳米结构,它们的溶剂内聚能密度以及相关的疏溶剂效应。我们预测,将来会有更多的IL被鉴定为两亲性自组装溶剂。

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