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软粘性偶极 - 四极 - 八极水模型的动力学性质:一项分子动力学研究

Dynamical properties of the soft sticky dipole-quadrupole-octupole water model: a molecular dynamics study.

作者信息

Chowdhuri Snehasis, Tan Ming-Liang, Ichiye Toshiko

机构信息

Department of Chemistry, Georgetown University, Washington, DC 20057, USA.

出版信息

J Chem Phys. 2006 Oct 14;125(14):144513. doi: 10.1063/1.2357117.

Abstract

The dynamical properties of the soft sticky dipole-quadrupole-octupole (SSDQO) water model using SPC/E moments are calculated utilizing molecular dynamics simulations. This new potential for liquid water describes the water-water interactions by a Lennard-Jones term and a sticky potential, which is an approximate moment expansion with point dipole, quadrupole, and octupole moments, and reproduces radial distribution functions of pure liquid water using the moments of SPC/E [Ichiye and Tan, J. Chem. Phys. 124, 134504 (2006)]. The forces and torques of SSDQO water for the dipole-quadrupole, quadrupole-quadrupole, and dipole-octupole interactions are derived here. The simulations are carried out at 298 K in the microcanonical ensemble employing the Ewald method for the long-range dipole-dipole interactions. Here, various dynamical properties associated with translational and rotational motions of SSDQO water using the moments of SPC/E (SSDQO:SPC/E) water are compared with the results from SPC/E and also experiment. The self-diffusion coefficient of SSDQO:SPC/E water is found to be in excellent agreement with both SPC/E and experiment whereas the single particle orientational relaxation time for dipole vector is better than SPC/E water but it is somewhat smaller than experiment. The dielectric constant of SSDQO:SPC/E is essentially identical to SPC/E, and both are slightly lower than experiment. Also, molecular dynamics simulations of the SSDQO water model are found to be about twice as fast as three-site models such as SPC/E.

摘要

利用分子动力学模拟计算了采用SPC/E矩的软粘性偶极-四极-八极(SSDQO)水模型的动力学性质。这种新的液态水势能通过一个 Lennard-Jones 项和一个粘性势能来描述水-水相互作用,该粘性势能是一种用点偶极、四极和八极矩进行的近似矩展开,并利用SPC/E的矩再现了纯液态水的径向分布函数[市江和谷,《化学物理杂志》124,134504(2006)]。本文推导了SSDQO水在偶极-四极、四极-四极和偶极-八极相互作用下的力和扭矩。模拟在298K的微正则系综中进行,采用Ewald方法处理长程偶极-偶极相互作用。在此,将利用SPC/E(SSDQO:SPC/E)水的矩与SSDQO水的平移和旋转运动相关的各种动力学性质与SPC/E的结果以及实验结果进行了比较。发现SSDQO:SPC/E水的自扩散系数与SPC/E和实验结果都非常吻合,而偶极矢量的单粒子取向弛豫时间比SPC/E水更好,但比实验结果略小。SSDQO:SPC/E的介电常数与SPC/E基本相同,且两者均略低于实验值。此外,发现SSDQO水模型的分子动力学模拟速度约为SPC/E等三点模型的两倍。

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