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离子液体的水溶液:微观组装

Aqueous Solutions of Ionic Liquids: Microscopic Assembly.

作者信息

Vicent-Luna Jose Manuel, Dubbeldam David, Gómez-Álvarez Paula, Calero Sofia

机构信息

Department of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide, Ctra. Utrera km 1., 41013, Seville, Spain.

Van't Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, 1098 XH, Amsterdam, The Netherlands.

出版信息

Chemphyschem. 2016 Feb 3;17(3):380-6. doi: 10.1002/cphc.201501022. Epub 2015 Dec 17.

Abstract

Aqueous solutions of ionic liquids are of special interest, due to the distinctive properties of ionic liquids, in particular, their amphiphilic character. A better understanding of the structure-property relationships of such systems is hence desirable. One of the crucial molecular-level interactions that influences the macroscopic behavior is hydrogen bonding. In this work, we conduct molecular dynamics simulations to investigate the effects of ionic liquids on the hydrogen-bond network of water in dilute aqueous solutions of ionic liquids with various combinations of cations and anions. Calculations are performed for imidazolium-based cations with alkyl chains of different lengths and for a variety of anions, namely, Br, NO3, SCN BF4, PF6, and Tf2N. The structure of water and the water-ionic liquid interactions involved in the formation of a heterogeneous network are analyzed by using radial distribution functions and hydrogen-bond statistics. To this end, we employ the geometric criterion of the hydrogen-bond definition and it is shown that the structure of water is sensitive to the amount of ionic liquid and to the anion type. In particular, SCN and Tf2N were found to be the most hydrophilic and hydrophobic anions, respectively. Conversely, the cation chain length did not influence the results.

摘要

由于离子液体具有独特的性质,特别是其两亲性,离子液体的水溶液备受关注。因此,更好地理解此类体系的结构-性质关系是很有必要的。影响宏观行为的关键分子水平相互作用之一是氢键。在这项工作中,我们进行分子动力学模拟,以研究离子液体对具有不同阳离子和阴离子组合的离子液体稀水溶液中水的氢键网络的影响。对具有不同长度烷基链的咪唑鎓基阳离子以及多种阴离子,即BrNO3SCNBF4PF6Tf2N进行了计算。通过使用径向分布函数和氢键统计分析了形成异质网络过程中涉及的水的结构以及水-离子液体相互作用。为此,我们采用了氢键定义的几何标准,结果表明水的结构对离子液体的量和阴离子类型敏感。特别是,发现SCNTf2N分别是最亲水和疏水的阴离子。相反,阳离子链长度对结果没有影响。

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