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利用分子模拟预测烷基芳烃的水合吉布斯能量:当前力场的比较和新参数集的开发,以获得准确的溶剂化数据。

Predicting hydration Gibbs energies of alkyl-aromatics using molecular simulation: a comparison of current force fields and the development of a new parameter set for accurate solvation data.

机构信息

Laboratory of Separation and Reaction Engineering, Departamento de Engenharia Química, Faculdade de Engenharia, Universidade do Porto, Rua do Dr. Roberto Frias, 4200-465 Porto, Portugal.

出版信息

Phys Chem Chem Phys. 2011 Oct 14;13(38):17384-94. doi: 10.1039/c1cp21245a. Epub 2011 Aug 31.

Abstract

The Gibbs energy of hydration is an important quantity to understand the molecular behavior in aqueous systems at constant temperature and pressure. In this work we review the performance of some popular force fields, namely TraPPE, OPLS-AA and Gromos, in reproducing the experimental Gibbs energies of hydration of several alkyl-aromatic compounds--benzene, mono-, di- and tri-substituted alkylbenzenes--using molecular simulation techniques. In the second part of the paper, we report a new model that is able to improve such hydration energy predictions, based on Lennard Jones parameters from the recent TraPPE-EH force field and atomic partial charges obtained from natural population analysis of density functional theory calculations. We apply a scaling factor determined by fitting the experimental hydration energy of only two solutes, and then present a simple rule to generate atomic partial charges for different substituted alkyl-aromatics. This rule has the added advantages of eliminating the unnecessary assumption of fixed charge on every substituted carbon atom and providing a simple guideline for extrapolating the charge assignment to any multi-substituted alkyl-aromatic molecule. The point charges derived here yield excellent predictions of experimental Gibbs energies of hydration, with an overall absolute average deviation of less than 0.6 kJ mol(-1). This new parameter set can also give good predictive performance for other thermodynamic properties and liquid structural information.

摘要

水合吉布斯自由能是理解恒温恒压下水相体系中分子行为的一个重要参数。在这项工作中,我们回顾了一些流行的力场,即 TraPPE、OPLS-AA 和 Gromos,在使用分子模拟技术再现几种烷基芳烃化合物——苯、单取代、二取代和三取代烷基苯——的实验水合吉布斯自由能方面的性能。在论文的第二部分,我们报告了一种新的模型,该模型能够改进这些水合自由能预测,其基于最近的 TraPPE-EH 力场的 Lennard-Jones 参数和密度泛函理论计算的自然布居分析得到的原子部分电荷。我们应用一个由仅拟合两种溶质的实验水合能确定的缩放因子,然后提出了一种生成不同取代的烷基芳烃原子部分电荷的简单规则。该规则除了消除对每个取代碳原子上固定电荷的不必要假设外,还为将电荷分配外推到任何多取代的烷基芳烃分子提供了一个简单的指导方针。这里得到的点电荷对实验水合吉布斯自由能给出了极好的预测,整体绝对平均偏差小于 0.6 kJ mol(-1)。这个新的参数集也可以对其他热力学性质和液体结构信息提供良好的预测性能。

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