Berim Gersh O, Ruckenstein Eli
Department of Chemical and Biological Engineering, State University of New York at Buffalo, Buffalo, New York 14260, USA.
J Chem Phys. 2009 May 14;130(18):184712. doi: 10.1063/1.3133327.
The solid-vapor and solid-liquid surface tensions of a fluid in contact with smooth solid surfaces as well as the liquid-vapor surface tension are determined on the basis of a nonlocal density functional theory in wide ranges of temperature and parameters of Lennard-Jones potentials used to represent the fluid-fluid and fluid-solid interactions. The contact angle theta of a macroscopic drop on the solid surface, calculated using the Young equation at various temperatures and various values of the hard core parameter sigma(fs) of the fluid-solid interaction potential, exhibited a simple linear dependence on the fluid-solid energy parameter epsilon(fs). At a certain (critical) value epsilon(fs) = epsilon(0) which depends on sigma(fs), the contact angle acquires a value theta(0) which is almost independent of temperature and sigma(fs). If a drop makes with the surface a contact angle theta > theta(0) (this occurs for epsilon(fs) < epsilon(0)), then theta increases with increasing temperature. Vice versa, if on a given surface theta < theta(0) (epsilon(fs) > epsilon(0)) then theta decreases with increasing temperature. The simple expression derived previously (G. O. Berim and E. Ruckenstein, J. Chem. Phys. 130, 044709 (2009)) for a nanodrop on a solid surface, which relates in a unified form the contact angle theta to the parameters of the interaction potentials and temperature, remains valid for macroscopic drops with some parameters slightly modified.
基于非局部密度泛函理论,在宽温度范围以及用于表示流体 - 流体和流体 - 固体相互作用的 Lennard - Jones 势参数范围内,确定了与光滑固体表面接触的流体的固 - 气和固 - 液表面张力以及液 - 气表面张力。使用杨氏方程在不同温度和流体 - 固体相互作用势的硬核参数(\sigma_{(fs)})的不同值下计算得到的固体表面上宏观液滴的接触角(\theta),表现出与流体 - 固体能量参数(\epsilon_{(fs)})的简单线性依赖关系。在某个取决于(\sigma_{(fs)})的特定(临界)值(\epsilon_{(fs)} = \epsilon_0)时,接触角获得一个几乎与温度和(\sigma_{(fs)})无关的值(\theta_0)。如果液滴与表面形成的接触角(\theta > \theta_0)(当(\epsilon_{(fs)} < \epsilon_0)时会出现这种情况),那么(\theta)随温度升高而增大。反之,如果在给定表面上(\theta < \theta_0)((\epsilon_{(fs)} > \epsilon_0)),则(\theta)随温度升高而减小。先前(G. O. Berim 和 E. Ruckenstein,《化学物理杂志》130, 044709 (2009))推导的关于固体表面上纳米液滴的简单表达式,该表达式以统一形式将接触角(\theta)与相互作用势参数和温度相关联,对于一些参数略有修改的宏观液滴仍然有效。