Baidakov Vladimir G
Institute of Thermophysics, Ural Branch of the Russian Academy of Sciences, Amundsen Street 107a, 620016 Ekaterinburg, Russia.
J Chem Phys. 2016 Feb 21;144(7):074502. doi: 10.1063/1.4941689.
The process of bubble nucleation in a Lennard-Jones (LJ) liquid is studied by molecular dynamics (MD) simulation. The bubble nucleation rate J is determined by the mean life-time method at temperatures above that of the triple point in the region of negative pressures. The results of simulation are compared with classical nucleation theory (CNT) and modified classical nucleation theory (MCNT), in which the work of formation of a critical bubble is determined in the framework of the van der Waals-Cahn-Hilliard gradient theory (GT). It has been found that the values of J obtained in MD simulation systematically exceed the data of CNT, and this excess in the nucleation rate reaches 8-10 orders of magnitude close to the triple point temperature. The results of MCNT are in satisfactory agreement with the data of MD simulation. To describe the properties of vapor-phase nuclei in the framework of GT, an equation of state has been built up which describes stable, metastable and labile regions of LJ fluids. The surface tension of critical bubbles γ has been found from CNT and data of MD simulation as a function of the radius of curvature of the surface of tension R*. The dependence γ(R*) has also been calculated from GT. The Tolman length has been determined, which is negative and in modulus equal to ≈(0.1 - 0.2) σ. The paper discusses the applicability of the Tolman formula to the description of the properties of critical nuclei in nucleation.
通过分子动力学(MD)模拟研究了 Lennard-Jones(LJ)液体中的气泡成核过程。在负压区域高于三相点温度的条件下,采用平均寿命法确定气泡成核速率 J。将模拟结果与经典成核理论(CNT)和修正经典成核理论(MCNT)进行比较,其中临界气泡形成功是在范德华 - 卡恩 - 希利尔梯度理论(GT)框架内确定的。研究发现,MD 模拟中获得的 J 值系统地超过了 CNT 的数据,并且在接近三相点温度时,成核速率的这种过量达到 8 - 10 个数量级。MCNT 的结果与 MD 模拟数据吻合良好。为了在 GT 框架内描述汽相核的性质,建立了一个状态方程,该方程描述了 LJ 流体的稳定、亚稳和不稳定区域。从 CNT 和 MD 模拟数据中得出了临界气泡的表面张力γ作为表面张力半径 R的函数。还从 GT 计算了γ(R)的依赖性。确定了托尔曼长度,其为负,模量约等于(0.1 - 0.2)σ。本文讨论了托尔曼公式在描述成核过程中临界核性质方面的适用性。