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[C(n)mim][PF6]在石墨表面吸附的界面结构的分子动力学模拟:温度和烷基链长的影响。

Molecular dynamics simulation of the interfacial structure of [C(n)mim][PF6] adsorbed on a graphite surface: effects of temperature and alkyl chain length.

机构信息

Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, People's Republic of China.

出版信息

J Phys Condens Matter. 2011 May 4;23(17):175001. doi: 10.1088/0953-8984/23/17/175001. Epub 2011 Apr 8.

DOI:10.1088/0953-8984/23/17/175001
PMID:21474885
Abstract

The structures and diffusion behaviors of a series of ionic liquids [C(n)mim][PF(6)] (n = 1, 4, 8 and 12) on a graphite surface have been investigated by means of molecular dynamics simulation. It was found that three or four ordering layers of ionic liquids were formed near the graphite surface, and this layering structure was stable over the temperature range investigated. At the liquid/vacuum interface, the ionic liquid with a butyl chain had a monolayer ordering surface, while [C(8)mim][PF(6)] and [C(12)mim][PF(6)] exhibited a bilayer ordering with a polar domain sandwiched between two orientational nonpolar domains. More impressively, the simulated results showed that for the ionic liquids with alkyl chains longer than C(4), the adjacent alkyl chains in the whole film tended to be parallel to each other, with the imidazolium rings packed closely together. This indicated that the ionic liquids have a better regulated short-range structure than was previously expected. It was also found that both in the bottom layer and in the bulk region, the diffusion of the alkyl chains was much faster than that of the polar groups. However, as the alkyl chain length increased, the charge delocalization in the cation and the enhanced van der Waals interaction between the nonpolar groups contributed by reducing this difference in the diffusivity of major groups.

摘要

采用分子动力学模拟方法研究了一系列离子液体[C(n)mim][PF(6)](n = 1、4、8 和 12)在石墨表面的结构和扩散行为。结果发现,在石墨表面附近形成了三层或四层有序离子液体层,这种层状结构在研究的温度范围内是稳定的。在液体/真空界面处,具有丁基链的离子液体具有单层有序表面,而[C(8)mim][PF(6)]和[C(12)mim][PF(6)]表现出双层有序结构,极性域夹在两个取向非极性域之间。更令人印象深刻的是,模拟结果表明,对于烷基链长于 C(4)的离子液体,整个膜中的相邻烷基链倾向于彼此平行,而咪唑环则紧密堆积在一起。这表明离子液体具有比预期更好的短程调控结构。还发现,无论是在底层还是在体相区域,烷基链的扩散速度都比极性基团快得多。然而,随着烷基链长度的增加,阳离子的电荷离域和非极性基团之间增强的范德华相互作用,通过减少主要基团扩散率的差异,导致这种情况有所改善。

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