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Near-Wall Molecular Ordering of Dilute Ionic Liquids

机译:稀离子液体的近壁分子有序性

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摘要

The interfacial behavior of ionic liquids promises tunable lubrication as well as playing an integral role in ion diffusion for electron transfer. Diluting the ionic liquids optimizes bulk parameters, such as electric conductivity, and one would expect dilution to disrupt the near-wall molecular ordering. We study this ordering in the ionic liquids [Emim]+[NTf2], [Emim]+[DCA], and [C4mpyr]+[NTf2], diluted in the solvent dimethyl sulfoxide. We found a structural crossover from well-ordered ionic liquids to a well-ordered solvent with increasing dilution, but this occurs nonlinearly, with solvent molecules initially space-filling and solvating and later disrupting the ionic layers. This is of key importance for ionic liquids as optimized tunable nanolubricants.
机译:离子液体的界面行为有望实现可调节的润滑,并在电子转移的离子扩散中起不可或缺的作用。稀释离子液体可优化体积参数,例如电导率,人们期望稀释能破坏近壁分子的有序性。我们在离子液体[Emim] + [NTf2] -,[Emim] + [DCA] -< / sup>和[C4mpyr] + [NTf2] -稀释在二甲基亚砜溶剂中。我们发现,随着稀释度的增加,从有序的离子液体到有序的溶剂的结构交叉,但这是非线性发生的,溶剂分子最初是空间填充和溶剂化,后来破坏了离子层。作为优化的可调谐纳米润滑剂,这对于离子液体至关重要。

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