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为分子流体参数化力场的系统程序。

Systematic procedure to parametrize force fields for molecular fluids.

作者信息

Salas Frank José, Méndez-Maldonado G Arlette, Núñez-Rojas Edgar, Aguilar-Pineda Gabriel Eloy, Domínguez Hector, Alejandre José

机构信息

Departamento de Química, Universidad Autónoma Metropolitana-Iztapalapa , Av. San Rafael Atlixco 186, Col. Vicentina, 09340, México Distrito Federal, México.

Colegio de Ciencia y Tecnología, Universidad Autónoma de la Ciudad de México , Fray Servando Teresa de Mier 99, 06080, México Distrito Federal, México.

出版信息

J Chem Theory Comput. 2015 Feb 10;11(2):683-93. doi: 10.1021/ct500853q. Epub 2015 Jan 7.

Abstract

A new strategy to develop force fields for molecular fluids is presented. The intermolecular parameters are fitted to reproduce experimental values of target properties at ambient conditions and also the critical temperature. The partial charges are chosen to match the dielectric constant. The Lennard-Jones parameters, εii and σii, are fitted to reproduce the surface tension at the vapor-liquid interface and the liquid density, respectively. The choice of those properties allows obtaining systematically the final parameters using a small number of simulations. It is shown that the use of surface tension as a target property is better than the choice of heat of vaporization. The method is applied to molecules, from all atoms to a coarse-grained level, such as pyridine, dichloromethane, methanol, and 1-ethyl-3-methylimidazolium tetrafluoroborate (EMIM-BF4) at different temperatures and pressures. The heat of vaporization, radial distribution functions, and self-diffusion coeficient are also calculated.

摘要

提出了一种为分子流体开发力场的新策略。分子间参数经拟合以重现目标性质在环境条件下以及临界温度时的实验值。选择部分电荷以匹配介电常数。分别拟合Lennard-Jones参数εii和σii,以重现气液界面处的表面张力和液体密度。选择这些性质使得能够通过少量模拟系统地获得最终参数。结果表明,将表面张力用作目标性质比选择汽化热更好。该方法应用于从全原子到粗粒度水平的分子,如吡啶、二氯甲烷、甲醇以及不同温度和压力下的1-乙基-3-甲基咪唑四氟硼酸盐(EMIM-BF4)。还计算了汽化热、径向分布函数和自扩散系数。

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