Kuznetsova Tatyana, Kvamme Bjørn
Department of Physics, University of Bergen, Allegt. 55, 5007 Bergen, Norway.
J Comput Chem. 2001 Nov 30;22(15):1772-1781. doi: 10.1002/jcc.1130.
Investigation into volumetric and energetic properties of several atomistic models mimicking carbon dioxide geometry and quadrupole momentum covered the liquid-vapor coexistence curve. Thermodynamic integration over a polynomial and an exponential-polynomial path was used to calculate free energy. Computational results showed that model using GROMOS Lennard-Jones parameters was unsuitable for bulk CO(2) simulations. On the other hand, model with potential fitted to reproduce only correct density-pressure relationship in the supercritical region proved to yield correct enthalpy of vaporization and free energy of liquid CO(2) in the low-temperature region. Except for molar volume at the upper part of the vapor-liquid equilibrium line, the bulk properties of exp-6-1 parametrization of ab initio CO(2) potential were in a close agreement with the experimental results. Copyright 2001 John Wiley & Sons, Inc. J Comput Chem 22: 1772-1781, 2001
对几个模拟二氧化碳几何结构和四极矩的原子模型的体积和能量特性进行的研究涵盖了液-气共存曲线。通过在多项式和指数-多项式路径上进行热力学积分来计算自由能。计算结果表明,使用GROMOS Lennard-Jones参数的模型不适用于大量CO₂模拟。另一方面,仅拟合以在超临界区域再现正确密度-压力关系的势模型,在低温区域能得出正确的汽化焓和液态CO₂的自由能。除了气-液平衡线上部的摩尔体积外,从头算CO₂势的exp-6-1参数化的体相性质与实验结果非常吻合。版权所有2001 John Wiley & Sons, Inc.《计算化学杂志》2001年第22卷,第1772 - 1781页