首页> 外文期刊>The Journal of Chemical Physics >Intermolecular interactions of liquid dichloromethane and equilibrium properties of liquid-vapor and liquid-liquid interfaces: A molecular dynamics study
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Intermolecular interactions of liquid dichloromethane and equilibrium properties of liquid-vapor and liquid-liquid interfaces: A molecular dynamics study

机译:液态二氯甲烷的分子间相互作用和液-汽和液-液界面的平衡特性:分子动力学研究

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摘要

Extensive molecular dynamics simulations are carried out to study the molecular interactions, liquid states, and liquid/vapor properties of dichloromethane. The study is also extended to the equilibrium properties of the liquid/liquid interface of water-dichloromethane. The intermolecular interactions among water, dichloromethane, and water-dichloromethane are described using our polarizable potential models. The equilibrium properties of liquid dichloromethane, including the radial distribution functions, the intermolecular structural factor, the self-diffusion coefficient, and the dielectric constant, are evaluated. The dielectric constant is computed using Ewald summation techniques and the computed result compared reasonably well with the available experimental data. Properties such as surface tensions and density profiles of liquid/vapor dichloromethane are evaluated. We found that the compared surface tensions for several temperatures are in excellent agreement with experimental data. The computed density profile of the liquid-liquid interface of water-dichloromethane is averaged over 1 ns and we found the computed profile to be quite smooth and stable. The effect of polarization on the liquid/liquid interfacial equilibrium properties is evaluated by computing the dipole moments of water and dichloromethane molecules as a function of the distance normal to the interface. We found that these values deviated significantly from the simulations that are based on nonpolarizable potential models. We attribute these observations to the changes in the electric fields around the water and dichloromethane molecules near the interface.
机译:进行了广泛的分子动力学模拟,以研究二氯甲烷的分子相互作用,液相和液/气性质。该研究还扩展到水-二氯甲烷的液/液界面的平衡性质。使用我们的极化电位模型描述了水,二氯甲烷和水-二氯甲烷之间的分子间相互作用。评价了液体二氯甲烷的平衡特性,包括径向分布函数,分子间结构因子,自扩散系数和介电常数。使用Ewald求和技术计算介电常数,并将计算结果与可用的实验数据进行合理比较。评价诸如液体/蒸气二氯甲烷的表面张力和密度分布的性质。我们发现在几个温度下比较的表面张力与实验数据非常吻合。水-二氯甲烷的液-液界面的计算出的密度分布在1 ns内取平均值,我们发现计算出的分布非常平滑和稳定。通过计算水和二氯甲烷分子的偶极矩作为垂直于界面距离的函数,可以评估极化对液/液界面平衡特性的影响。我们发现这些值与基于不可极化电势模型的模拟显着不同。我们将这些观察结果归因于界面附近水和二氯甲烷分子周围电场的变化。

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