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基于分子动力学模拟的胆碱类质子离子液体中的氢键特征

Hydrogen Bonding Features in Cholinium-Based Protic Ionic Liquids from Molecular Dynamics Simulations.

作者信息

Campetella Marco, Le Donne Andrea, Daniele Maddalena, Gontrani Lorenzo, Lupi Stefano, Bodo Enrico, Leonelli Francesca

机构信息

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

INFN-LNF , Via Enrico Fermi 40 , Frascati , Italy.

出版信息

J Phys Chem B. 2018 Mar 8;122(9):2635-2645. doi: 10.1021/acs.jpcb.7b12455. Epub 2018 Feb 23.

Abstract

We explore the structure of a series of protic Ionic Liquids based on the choline cation and amino acid anions. In the series, the length and the branching of the amino acid alkyl chain varies. Ab initio molecular dynamics, X-ray diffraction measurements, and infrared spectra have been used to provide a reliable picture of the short-range structure and of the short-time dynamic process that characterize the fluids. We have put special emphasis on the peculiar and complicated network of hydrogen bonds that stem from the amphoteric nature of the anion moiety. The use of ab initio molecular dynamics allows us to calculate the "exact" charge density of the system and hence to obtain fairly accurate infrared spectra that, in turn, have been used to assign the experimental ones.

摘要

我们研究了一系列基于胆碱阳离子和氨基酸阴离子的质子离子液体的结构。在该系列中,氨基酸烷基链的长度和支化情况有所不同。采用了从头算分子动力学、X射线衍射测量和红外光谱来提供有关这些流体特征的短程结构和短时间动态过程的可靠描述。我们特别强调了源自阴离子部分两性性质的独特而复杂的氢键网络。从头算分子动力学的应用使我们能够计算系统的“精确”电荷密度,从而获得相当准确的红外光谱,进而用于对实验光谱进行归属。

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