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Lennard-Jones 体系接近固体壁面:从分子模拟方法计算界面自由能。

Lennard-Jones systems near solid walls: computing interfacial free energies from molecular simulation methods.

机构信息

Institut für Theoretische Physik II, Heinrich-Heine-Universität Düsseldorf, Universitätsstraße 1, 40225 Düsseldorf, Germany.

出版信息

J Chem Phys. 2013 Aug 28;139(8):084705. doi: 10.1063/1.4819061.

Abstract

Different computational techniques in combination with molecular dynamics computer simulation are used to determine the wall-liquid and the wall-crystal interfacial free energies of a modified Lennard-Jones (LJ) system in contact with a solid wall. Two different kinds of solid walls are considered: a flat structureless wall and a structured wall consisting of an ideal crystal with the particles rigidly attached to fcc lattice sites. Interfacial free energies are determined by a thermodynamic integration scheme, the anisotropy of the pressure tensor, the non-equilibrium work method based on Bennett acceptance criteria, and a method using Cahn's adsorption equations based on the interfacial thermodynamics of Gibbs. For the flat wall, interfacial free energies as a function of different densities of the LJ liquid and as a function of temperature along the coexistence curve are calculated. In the case of a structured wall, the interaction strength between the wall and the LJ system and the lattice constant of the structured wall are varied. Using the values of the wall-liquid and wall-crystal interfacial energies along with the value for the crystal-liquid interfacial free energy determined previously for the same system by the "cleaving potential method," we obtain the contact angle as a function of various parameters; in particular, the conditions are found under which partial wetting occurs.

摘要

不同的计算技术与分子动力学计算机模拟相结合,用于确定与固体壁接触的改性 Lennard-Jones (LJ) 系统的壁-液和壁-晶界面自由能。考虑了两种不同类型的固体壁:无结构的平面壁和由刚性附着在 fcc 晶格位的粒子组成的结构化壁。界面自由能通过热力学积分方案、压力张量的各向异性、基于 Bennett 接受标准的非平衡功方法以及基于 Gibbs 界面热力学的 Cahn 吸附方程方法来确定。对于平面壁,计算了 LJ 液体不同密度和共存曲线温度下的界面自由能。对于结构化壁,改变了壁与 LJ 系统之间的相互作用强度和结构化壁的晶格常数。利用壁-液和壁-晶界面能的值以及先前通过“劈开势方法”为相同系统确定的晶-液界面自由能的值,我们得到了作为各种参数函数的接触角;特别是,找到了发生部分润湿的条件。

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