IQTCUB, Departament de Química Física, Universitat de Barcelona, Barcelona, Spain.
J Phys Chem A. 2012 Jun 7;116(22):5480-90. doi: 10.1021/jp3023698. Epub 2012 May 24.
The intermolecular methane-methane and benzene (Bz)-methane interactions formulated in this paper are suitable to investigate systems of increasing complexity. The proposed CH(4)-CH(4) and Bz-CH(4) potential energy functions are indeed applied to study some macroscopic properties of methane and important features of both small Bz-(CH(4))(n) (n > 1-10) clusters and Bz surrounded by several CH(4) molecules. Relevant parameters of the interaction, derived from molecular polarizability components, have been proved to be useful to describe in a consistent way both size repulsion and dispersion attraction forces. The proposed potential model also allows one to isolate the role of the different intermolecular energy contributions. The spatial distribution of the CH(4) molecules in the clusters is investigated by means of molecular dynamics simulations under various conditions, even when methane phase transition from liquid to gas is likely to occur. In addition, several properties, such as radial distribution functions, density values, and mean diffusion coefficients, are analyzed in detail.
本文中所构建的甲烷-甲烷和苯(Bz)-甲烷分子间相互作用适用于研究越来越复杂的体系。所提出的 CH(4)-CH(4) 和 Bz-CH(4) 势能函数确实可用于研究甲烷的一些宏观性质以及大小为 Bz-(CH(4))(n)(n > 1-10)簇和 Bz 被几个 CH(4)分子包围的重要特征。从分子极化率分量推导出的相互作用相关参数已被证明可用于一致描述尺寸排斥和色散吸引力。所提出的势能模型还允许人们分离不同分子间能量贡献的作用。通过在各种条件下(甚至当甲烷从液体向气体相转变时)进行分子动力学模拟,研究了簇中 CH(4)分子的空间分布。此外,详细分析了几个性质,如径向分布函数、密度值和平均扩散系数。