Chemical Physics and Analysis, FCSD, Pacific Northwest National Laboratory, Richland, WA 99352, USA.
Phys Chem Chem Phys. 2010 Aug 21;12(31):8759-71. doi: 10.1039/b923306g. Epub 2010 Jun 15.
In this study, we investigate the effect of water-cluster formation in the supercritical (SC) systems CO(2)/(H(2)O)(n) as a function of water content using DFT-based molecular dynamics simulations. The dependence of the intermolecular and intramolecular structure and dynamic properties upon water concentration in the supercritical CO(2)/H(2)O phase at a density of 0.74 g cm(-3) and temperature of 318.15 K is investigated in detail and compared to previous studies of the pure sc-CO(2) system, single D(2)O in sc-CO(2), and Monte-Carlo simulations of a single water molecule in sc-CO(2) phase. Analysis of radial and orientational distribution functions of the intermolecular interactions shows that the presence of water molecules does not disturb the previously established distorted T-shaped orientation of CO(2) molecules, though there is evidence of perturbation of the second shell structure which enhances the preference for the slipped parallel orientation in this region. There is also evidence of short-lived hydrogen bonds between CO(2) and water molecules. For higher water concentrations, water clustering is observed, consistent with the low solubility of water in CO(2) under these conditions of temperature and pressure. Finally, the water-water and water-CO(2) interactions are discussed and analyzed in terms of the water self-association and thermodynamic quantities derived from the molecular dynamics simulations.
在这项研究中,我们使用基于密度泛函理论的分子动力学模拟,研究了水团簇在超临界(SC)系统 CO(2)/(H(2)O)(n)中形成的影响,其函数为水含量。在密度为 0.74 g cm(-3)和温度为 318.15 K 的超临界 CO(2)/H(2)O 相中,详细研究了水中浓度对分子间和分子内结构和动态性质的依赖关系,并与纯 sc-CO(2)系统、单个 sc-CO(2)中的 D(2)O 以及单个 sc-CO(2)相中水分子的蒙特卡罗模拟的先前研究进行了比较。对分子间相互作用的径向和取向分布函数的分析表明,水分子的存在不会干扰先前建立的 CO(2)分子扭曲 T 形取向,尽管有证据表明第二壳层结构受到干扰,这增强了该区域中滑动平行取向的偏好。也有证据表明 CO(2)和水分子之间存在短暂的氢键。对于较高的水浓度,观察到水簇形成,这与在这些温度和压力条件下 CO(2)中低溶解度的水一致。最后,根据分子动力学模拟得出的水自缔合和热力学量,讨论和分析了水-水和水-CO(2)相互作用。