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Two-body intermolecular potentials from second virial coefficient properties

机译:来自第二种病毒系数特性的双体分子间电位

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摘要

A method is reported that enables second virial coefficient properties to be used to obtain relatively simple two-body intermolecular potentials. Generic n-m Lennard-Jones/Mie potentials are transformed into two-body potentials for neon, argon, krypton, and xenon. Comparison with results from highly accurate ab initio potentials indicates good agreement. A complete potential for real fluids is obtained by combining the two-body potentials with a density-dependent term for three-body interactions. Vapor-liquid equilibria molecular simulation data for the new potentials are compared with the experiment, which demonstrates the effectiveness of the two- and three-body contributions. The combination of the two-body 10-8 Lennard-Jones/Mie potential and three-body term is a good overall choice for the noble gases. Published under license by AIP Publishing.
机译:报告了一种方法,使得第二病毒系数特性能够用于获得相对简单的双体分子间电位。 通用N-M Lennard-Jones / Mie电位被转变为霓虹灯,氩气,氪和氙的两体电位。 与高精度AB Initio潜力的结果的比较表明良好的一致性。 通过将双体电位与密度依赖性术语组合以进行三体相互作用来获得实际流体的完全电位。 蒸汽液体平衡分子模拟新电位的分子模拟数据与实验进行了比较,这表明了两体和三体贡献的有效性。 双体10-8 Lennard-jones / mie潜力和三体项的组合是惰性气体的良好整体选择。 通过AIP发布在许可证下发布。

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