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A molecular Ornstein-Zernike study of popular models for water and methanol

机译:流行的水和甲醇模型的分子Ornstein-Zernike研究

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摘要

Some effective models of water (TIP3P, SPC, SPC/E, TIP4P) and methanol (OPLS, H1) are studied with the help of the molecular Ornstein-Zernike (MOZ) theory using the hypernetted chain (HNC) approximation. The quality of the results obtained within the HNC approximation is discussed by comparison with values from molecular dynamics (MD) simulations. The MOZ-HNC theory yields internal excess energies and dielectric constants which are about 20% smaller than the simulation results found in the literature. The relative trends of the properties observed by simulation for the different interaction models are correctly predicted. In order to calculate the rotational invariant coefficients which define the liquid structure, new MD simulations were carried out. The rotational invariant coefficients derived from the simulation and from the MOZ theory strongly differ. In particular, the center-center distribution functions show that the theory is not able to reproduce the tetrahedral structure of water. In this solvent a comparison of the O-H distribution function indicates that the MOZ theory underestimates the H bonding. The use of a spherically symmetric bridge function in the reference HNC approximation does not lead to an improvement of the MOZ results. The observed defects of the MOZ-HNC approach contrast with the good agreement found for aprotic solvents and are presumably due to the association by H bonds in water and methanol.
机译:借助分子Ornstein-Zernike(MOZ)理论,使用超网链(HNC)近似,研究了一些有效的水模型(TIP3P,SPC,SPC / E,TIP4P)和甲醇(OPLS,H1)。通过与分子动力学(MD)模拟的值进行比较,讨论了在HNC近似值内获得的结果的质量。 MOZ-HNC理论产生的内部过剩能量和介电常数比文献中的模拟结果小约20%。通过仿真观察到的不同交互模型的特性的相对趋势可以正确预测。为了计算定义液体结构的旋转不变系数,进行了新的MD模拟。从模拟和MOZ理论得出的旋转不变系数有很大的不同。特别地,中心-中心分布函数表明该理论不能再现水的四面体结构。在这种溶剂中,O-H分布函数的比较表明,MOZ理论低估了H键。在参考HNC近似中使用球对称桥函数不会导致MOZ结果的改善。观察到的MOZ-HNC方法的缺陷与非质子溶剂的良好一致性形成对比,大概是由于水和甲醇中H键的缔合所致。

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