论文标题
考虑多体偶极相关性的水的非局部密度功能理论:“液体蒸气”界面的双极管和表面张力
Nonlocal density functional theory of water taking into account many-body dipole correlations: Binodal and surface tension of 'liquid-vapour' interface
论文作者
论文摘要
在本文中,我们制定了不均匀水的非局部密度功能理论。我们将水分子建模为几个相对充满电的位点。带负电荷的位点通过Lennard-Jones电位(空间和分散相互作用),方孔电位(由于电子电荷传递而引起的短距离特定相互作用)和库仑电位相互相互作用,而带电的站点仅通过应用库仑电位来与所有类型的站点相互作用。考虑到通过基本测量理论(FMT)的非局部填料效应,平均场近似中的分散和特定相互作用,以及通过随机阶段近似在多体级别的静电相互作用,我们描述了液态蒸气界面。我们证明,我们的模型没有明确说明由于氢键而导致的水分子缔合,并且在多体水平上对多体静电相互作用的明确说明能够描述液态蒸气的共存曲线和在环境压力和温度下的表面张力。我们与文献MD模拟结果中的可用一致性达成了很好的一致性,用于在环境状态参数下的液体蒸气界面密度曲线。公式的理论可以用作描述毛细血管现象的理论背景,该毛细血管现象发生在微孔和介孔材料中。
In this paper we formulate a nonlocal density functional theory of inhomogeneous water. We model a water molecule as a couple of oppositely charged sites. The negatively charged sites interact with each other through the Lennard-Jones potential (steric and dispersion interactions), square-well potential (short-range specific interactions due to electron charge transfer), and Coulomb potential, whereas the positively charged sites interact with all types of sites by applying the Coulomb potential only. Taking into account the nonlocal packing effects via the fundamental measure theory (FMT), dispersion and specific interactions in the mean-field approximation, and electrostatic interactions at the many-body level through the random phase approximation, we describe the liquid-vapour interface. We demonstrate that our model without explicit account of the association of water molecules due to hydrogen bonding and with explicit account of the many-body electrostatic interactions at the many-body level is able to describe the liquid-vapour coexistence curve and the surface tension at the ambient pressures and temperatures. We obtain very good agreement with available in the literature MD simulation results for density profile of liquid-vapour interface at ambient state parameters. The formulated theory can be used as a theoretical background for describing of the capillary phenomena, occurring in micro- and mesoporous materials.