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通过第一性原理和经典分子动力学模拟研究液态甲酸的结构。

Structure of liquid formic acid investigated by first principle and classical molecular dynamics simulations.

作者信息

Chelli Riccardo, Righini Roberto, Califano Salvatore

机构信息

Dipartimento di Chimica, Università di Firenze, Via della Lastruccia 3, 50019 Sesto Fiorentino, Italy.

出版信息

J Phys Chem B. 2005 Sep 8;109(35):17006-13. doi: 10.1021/jp051731u.

Abstract

The structure of liquid formic acid has been investigated by Car-Parrinello and classical molecular dynamics simulations, focusing on the characterization of the H-bond network and on the mutual arrangement of pairs of bonded molecules. In agreement with previous computational studies, two levels of H-bonded structures have been found. Small clusters, characterized by O-H...O bonds, are held together by weak C-H...O bonds to form large branched structures. From the ab initio simulation we infer the importance of cyclic H-bond dimer configurations, typical of the gas phase. Most of these dimer structures are however found to be embedded into H-bonded chains. When only O-H...O bonds are taken into account, linear H-bond chains are detected as basic structures of the liquid. More branched structures occur when C-H...O bonds are also considered. Regarding the arrangement of molecular pairs, we observed that O-H...O bonds favor the occurrence of configurations with parallel molecular planes, whereas no preferential orientation is observed for molecules forming C-H...O bonds.

摘要

通过Car-Parrinello方法和经典分子动力学模拟研究了液态甲酸的结构,重点关注氢键网络的表征以及键合分子对的相互排列。与先前的计算研究一致,发现了两个层次的氢键结构。以O-H...O键为特征的小簇通过弱C-H...O键结合在一起,形成大的分支结构。从从头算模拟中,我们推断出环状氢键二聚体构型的重要性,这在气相中很典型。然而,发现这些二聚体结构中的大多数都嵌入到氢键链中。当只考虑O-H...O键时,线性氢键链被检测为液体的基本结构。当也考虑C-H...O键时,会出现更多分支结构。关于分子对的排列,我们观察到O-H...O键有利于分子平面平行的构型出现,而对于形成C-H...O键的分子,没有观察到优先取向。

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