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关于水在深共熔溶剂氢键网络中的作用:尿素-甜菜碱体系的分子动力学和量子力学研究

On the role of water in the hydrogen bond network in DESs: an molecular dynamics and quantum mechanical study on the urea-betaine system.

作者信息

Contreras Renato, Lodeiro Lucas, Rozas-Castro Nicolás, Ormazábal-Toledo Rodrigo

机构信息

Departamento de Química, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Casilla 653, Santiago, Chile.

出版信息

Phys Chem Chem Phys. 2021 Jan 28;23(3):1994-2004. doi: 10.1039/d0cp06078j.

Abstract

We herein report an ab initio molecular dynamics study on a natural DES composed of urea and betaine in a 3 : 2 ratio, as a test case for evaluating the water effect. The article deals with a theoretical study using both ab initio molecular dynamics and quantum chemistry computations in order to unravel the role of water in the nanostructure of a urea-betaine mixture. Preliminary molecular dynamics outcomes (both radial and spatial distribution functions) suggest that water promotes the association between urea and betaine by increasing the hydrogen bond network and precluding the aggregation of urea molecules. In other words, the presence of water allows a less restrictive hydrogen bond network, presenting a regimen where the strong hydrogen bond interactions are replaced by a wide variety of weaker hydrogen bond interactions. On the other hand, in a water free DES there is a regimen where strong urea-betaine interactions are dominant. It is shown that second order perturbation theory energy analysis provides cogent insights into charge spreading and hydrogen bond patterns. A vibrational analysis (both IR and power spectrum) over the ab initio molecular dynamics trajectories in the water free DES as well as in the urea-betaine-water systems reveals that our results are consistent with the second order perturbation theory analysis and with the hydrogen bond network pattern.

摘要

我们在此报告一项关于由尿素和甜菜碱按3:2比例组成的天然低共熔溶剂(DES)的从头算分子动力学研究,以此作为评估水效应的一个测试案例。本文通过从头算分子动力学和量子化学计算进行理论研究,以阐明水在尿素 - 甜菜碱混合物纳米结构中的作用。初步的分子动力学结果(径向分布函数和空间分布函数)表明,水通过增加氢键网络并阻止尿素分子聚集来促进尿素与甜菜碱之间的缔合。换句话说,水的存在允许形成限制较少的氢键网络,呈现出一种强氢键相互作用被多种较弱氢键相互作用取代的状态。另一方面,在无水DES中存在一种强尿素 - 甜菜碱相互作用占主导的状态。结果表明,二阶微扰理论能量分析为电荷分布和氢键模式提供了有说服力的见解。对无水DES以及尿素 - 甜菜碱 - 水体系中从头算分子动力学轨迹进行的振动分析(红外光谱和功率谱)表明,我们的结果与二阶微扰理论分析以及氢键网络模式一致。

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