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Theory for the three-dimensional Mercedes-Benz model of water

机译:梅赛德斯-奔驰三维水模型的理论

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摘要

The two-dimensional Mercedes-Benz (MB) model of water has been widely studied, both by Monte Carlo simulations and by integral equation methods. Here, we study the three-dimensional (3D) MB model. We treat water as spheres that interact through Lennard-Jones potentials and through a tetrahedral Gaussian hydrogen bonding function. As the “right answer,” we perform isothermal-isobaric Monte Carlo simulations on the 3D MB model for different pressures and temperatures. The purpose of this work is to develop and test Wertheim’s Ornstein–Zernike integral equation and thermodynamic perturbation theories. The two analytical approaches are orders of magnitude more efficient than the Monte Carlo simulations. The ultimate goal is to find statistical mechanical theories that can efficiently predict the properties of orientationally complex molecules, such as water. Also, here, the 3D MB model simply serves as a useful workbench for testing such analytical approaches. For hot water, the analytical theories give accurate agreement with the computer simulations. For cold water, the agreement is not as good. Nevertheless, these approaches are qualitatively consistent with energies, volumes, heat capacities, compressibilities, and thermal expansion coefficients versus temperature and pressure. Such analytical approaches offer a promising route to a better understanding of water and also the aqueous solvation.
机译:通过蒙特卡洛模拟和积分方程方法,二维水的梅赛德斯·奔驰(MB)模型得到了广泛的研究。在这里,我们研究三维(3D)MB模型。我们将水视为通过Lennard-Jones势能和通过四面体高斯氢键作用相互作用的球体。作为“正确答案”,我们在3D MB模型上针对不同的压力和温度执行了等温-等压蒙特卡罗模拟。这项工作的目的是开发和测试Wertheim的Ornstein-Zernike积分方程和热力学扰动理论。这两种分析方法比蒙特卡洛模拟的效率高几个数量级。最终目标是找到可以有效预测定向复杂分子(例如水)的属性的统计力学理论。同样,在这里,3D MB模型只是充当测试此类分析方法的有用工作台。对于热水,分析理论与计算机模拟给出了精确的一致性。对于冷水,协议并不那么好。然而,这些方法在质量上与能量,体积,热容量,可压缩性以及热膨胀系数随温度和压力的关系一致。这种分析方法为更好地理解水以及水溶溶剂化提供了一条有希望的途径。

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