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基于胆碱阳离子的离子液体的理论研究。其凝聚相的从头算模拟。

Theoretical study of ionic liquids based on the cholinium cation. Ab initio simulations of their condensed phases.

作者信息

Campetella Marco, Bodo Enrico, Montagna Maria, De Santis Serena, Gontrani Lorenzo

机构信息

Chemistry Department, University of Rome "La Sapienza," Rome, Italy.

出版信息

J Chem Phys. 2016 Mar 14;144(10):104504. doi: 10.1063/1.4943197.

Abstract

We have explored by means of ab initio molecular dynamics the homologue series of 11 different ionic liquids based on the combination of the cholinium cation with deprotonated amino acid anions. We present a structural analysis of the liquid states of these compounds as revealed by accurate ab initio computations of the forces. We highlight the persistent structural motifs that see the ionic couple as the basic building block of the liquid whereby a strong hydrogen bonding network substantially determines the short range structural behavior of the bulk state. Other minor docking features of the interaction network are also discovered and described. Special cases along the series such as Cysteine and Phenylalanine are discussed in the view of their peculiar properties due to zwitterion formation and additional long-range structural organization.

摘要

我们通过从头算分子动力学方法研究了基于胆碱阳离子与去质子化氨基酸阴离子组合的11种不同离子液体的同系物系列。我们通过对力的精确从头算计算,对这些化合物的液态进行了结构分析。我们强调了持续存在的结构基序,这些基序将离子对视为液体的基本构建单元,由此一个强大的氢键网络在很大程度上决定了本体状态的短程结构行为。还发现并描述了相互作用网络的其他次要对接特征。鉴于半胱氨酸和苯丙氨酸等系列中的特殊情况由于两性离子形成和额外的长程结构组织而具有独特性质,对其进行了讨论。

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