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首页> 外文期刊>Molecular physics >The performance of non-polarizable and polarizable force-field parameter sets for ethylene glycol in molecular dynamics simulations of the pure liquid and its aqueous mixtures
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The performance of non-polarizable and polarizable force-field parameter sets for ethylene glycol in molecular dynamics simulations of the pure liquid and its aqueous mixtures

机译:乙二醇的不可极化和可极化力场参数集在纯液体及其水性混合物的分子动力学模拟中的性能

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摘要

Non-polarizable and polarizable force-field parameter sets for liquid ethylene glycol (EG) were developed for use in biomolecular simulation. In the polarizable models, electronic polarization effects were explicitly taken into account using the charge-on-spring method. The quality of the new force fields and two non-polarizable EG models taken from the literature was investigated by calculating relevant properties of the pure liquid and its aqueous mixtures, and comparing simulation results with experimental data. The performance of the EG models as a co-solvent in aqueous mixtures was additionally evaluated in a hydrophobic hydration study. The question was whether the experimentally known maximum in the solvation free enthalpy of argon at intermediate mixture compositions could be reproduced in the simulations. Values for the dielectric properties and excess free energy were found to be more off from experiment for the polarizable models than for the non-polarizable ones. However, a Kirkwood-Buff analysis of the aqueous mixtures and the hydrophobic hydration results exemplified that electronic polarization plays an important role in correctly describing attractive interactions between the EG and water co-solvent molecules. The trans/gauche ratio for ethylene glycol's O-C-C-O torsional angle was not found to systematically affect the properties of the pure liquid and aqueous mixtures.
机译:开发了液态乙二醇(EG)的不可极化和可极化力场参数集,用于生物分子模拟。在可极化模型中,使用弹簧充电方法明确考虑了电子极化效应。通过计算纯液体及其水溶液混合物的相关性能,并将仿真结果与实验数据进行比较,研究了新力场的质量和从文献中获得的两个不可极化的EG模型。 EG模型在水性混合物中作为助溶剂的性能还通过疏水水合研究进行了评估。问题是在模拟中是否可以重现实验已知的中间混合物组成下氩气的无溶剂化焓的最大值。发现与可极化模型相比,可极化模型的介电性质和过量自由能的值与实验相比更多。然而,水性混合物和疏水水合结果的柯克伍德-巴夫(Kirkwood-Buff)分析证明,电子极化在正确描述EG与水助溶剂分子之间的有吸引力的相互作用中起着重要作用。没有发现乙二醇的O-C-C-O扭转角的反式/胶粘比会系统地影响纯液体和水性混合物的性能。

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