He Songnian, Attard Phil
School of Chemistry F11, The University of Sydney, NSW 2006, Australia.
Phys Chem Chem Phys. 2005 Aug 7;7(15):2928-35. doi: 10.1039/b507106b. Epub 2005 Jul 4.
A formally exact Kirkwood-Buff virial formula for the surface tension of a supersaturated interface is derived. A modified Gibbs ensemble method is given that allows the creation of interacting supersaturated phases of equal chemical potential, and which enables the Kirkwood-Buff formula to be applied. The methods are tested by Monte Carlo simulation of a supersaturated Lennard-Jones fluid with a planar liquid-vapor interface. The Kirkwood-Buff results for the supersaturated surface tension are found to be in reasonable agreement with new results obtained here using the recently developed, formally exact, ghost interface method, [M. P. Moody and P. Attard, J. Chem. Phys., 2002, 117, 6705]. The surface tension is obtained as a function of supersaturation at four temperatures, and it is found to decrease with increasing supersaturation, and to vanish at the vapor spinodal. The relevance of the present results to the nucleation of droplets in a supersaturated vapor is discussed.
推导了用于过饱和界面表面张力的形式精确的柯克伍德-布夫维里公式。给出了一种改进的吉布斯系综方法,该方法允许创建具有相等化学势的相互作用过饱和相,并使柯克伍德-布夫公式得以应用。通过对具有平面液-气界面的过饱和 Lennard-Jones 流体进行蒙特卡罗模拟来测试这些方法。发现过饱和表面张力的柯克伍德-布夫结果与使用最近开发的形式精确的虚界面方法[M. P. Moody 和 P. Attard,《化学物理杂志》,2002 年,117 卷,6705 页]在此处获得的新结果合理一致。在四个温度下获得了表面张力作为过饱和度的函数,发现它随着过饱和度的增加而降低,并在蒸汽旋节线处消失。讨论了当前结果与过饱和蒸汽中液滴成核的相关性。