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Equilibrium vapor pressure and surface tension from cluster data: Density functional results

机译:来自簇数据的平衡蒸气压和表面张力:密度泛函结果

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Density functional theory is applied to investigate the possibility of using the data from atomic and molecular clusters for the prediction of equilibrium vapor pressure and surface tension. For this purpose free energies of center of mass clusters constrained to a spherical volume are calculated at various temperatures. Clusters composed of Lennard-Jones atoms and molecules of two Lennard-Jones sites are considered. The desired bulk values are extracted from cluster data using the method by Merikanto and [Phys. Rev. Lett. 98, 145702 (2007)] and a consistent comparison to the exact values obtained from the density functional theory is made. At temperatures not much above the triple point the estimates of both the equilibrium vapor pressure and surface tension are within 4% of the exact values for all the molecular models, including those with a structured liquid-vapor interface, if the clusters used for the estimates have more than about hundred molecules. The dependence on the constraining volume is found weak. (C) 2008 American Institute of Physics. [DOI: 10.1063/1.2996180]
机译:密度泛函理论用于研究使用原子和分子簇数据预测平衡蒸气压和表面张力的可能性。为此,在各种温度下计算被限制为球形体积的质心簇的中心的自由能。考虑由Lennard-Jones原子和两个Lennard-Jones位点的分子组成的簇。使用Merikanto和[Phys。牧师98,145702(2007)],并与从密度泛函理论获得的精确值进行了一致比较。在不超过三点的温度下,如果分子簇用于估算,则平衡蒸气压和表面张力的估计值都在所有分子模型(包括具有结构化液-气界面的分子模型)的精确值的4%以内有大约一百多个分子发现对约束量的依赖性很弱。 (C)2008美国物理研究所。 [DOI:10.1063 / 1.2996180]

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