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气泡的诞生:一项分子模拟研究。

The birth of a bubble: a molecular simulation study.

作者信息

Neimark Alexander V, Vishnyakov Aleksey

机构信息

Center for Modeling and Characterization of Nanoporous Materials, TRI/Princeton, Princeton, NJ 08542, USA.

出版信息

J Chem Phys. 2005 Feb 1;122(5):54707. doi: 10.1063/1.1829040.

Abstract

We study the nucleation of a bubble in a metastable Lennard-Jones (LJ) fluid, confined to a spherical pore with wetting walls, by a combination of grand canonical, canonical ensemble, and gauge cell Monte Carlo simulation methods complemented by the Voronoi-Delaunay tessellation analysis of statistical geometry of intermolecular cavities. We construct the isotherm of confined fluid in the form of a continuous van der Waals' loop, in which the unstable backward trajectory between the spinodals corresponds to bubble states. We show that as the degree of metastability increases and the fluid becomes progressively stretched, the decrease of fluid density is associated with the evolution of a population of interstitial intermolecular cavities. At the spinodal, the fluid becomes mechanically unstable: Interstitial cavities partly coalesce into a larger cavity located due to the system symmetry around the pore center. This cavity represents a bubble embryo, which grows at the expense of interstitial cavities. The nucleation barrier is calculated by direct thermodynamic integration along the isotherm. We compare our simulation results to the predictions of the classical nucleation theory and experiments on capillary condensation-evaporation of nitrogen in pores of hybrid organic-inorganic mesoporous molecular sieve HMM-3.

摘要

我们通过巨正则系综、正则系综和规范元胞蒙特卡罗模拟方法,并辅以分子间空穴统计几何的Voronoi-Delaunay镶嵌分析,研究了限制在具有润湿壁的球形孔中的亚稳Lennard-Jones(LJ)流体中气泡的成核过程。我们构建了呈连续范德瓦尔斯回路形式的受限流体等温线,其中旋节线之间不稳定的反向轨迹对应于气泡状态。我们表明,随着亚稳程度增加且流体逐渐被拉伸,流体密度的降低与间隙分子间空穴群体的演化相关。在旋节线处,流体变得机械不稳定:间隙空穴部分合并成一个由于系统围绕孔中心的对称性而位于中心的更大空穴。这个空穴代表一个气泡胚胎,它以间隙空穴为代价生长。通过沿等温线的直接热力学积分计算成核势垒。我们将模拟结果与经典成核理论的预测以及关于氮在有机 - 无机杂化介孔分子筛HMM - 3孔中的毛细管冷凝 - 蒸发实验进行比较。

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