Desgranges Caroline, Delhommelle Jerome
Department of Chemistry, University of North Dakota , Grand Forks, North Dakota 58202, United States.
J Chem Theory Comput. 2015 Nov 10;11(11):5401-14. doi: 10.1021/acs.jctc.5b00693. Epub 2015 Oct 7.
Using expanded Wang-Landau simulations, we show that taking into account the many-body interactions results in sharp changes in the grand-canonical partition functions of single-component systems, binary mixtures, and nanoconfined fluids. The many-body contribution, modeled with a 3-body Axilrod-Teller-Muto term, results in shifts toward higher chemical potentials of the phase transitions from low-density phases to high-density phases and accounts for deviations of more than, e.g., 20% of the value of the partition function for a single-component liquid. Using the statistical mechanics formalism, we analyze how this contribution has a strong impact on some properties (e.g., pressure, coexisting densities, and enthalpy) and a moderate impact on others (e.g., Gibbs or Helmholtz free energies). We also characterize the effect of the 3-body terms on adsorption isotherms and adsorption thermodynamic properties, thereby providing a full picture of the effect of the 3-body contribution on the thermodynamics of nanoconfined fluids.
通过使用扩展的王-兰道模拟,我们表明,考虑多体相互作用会导致单组分系统、二元混合物和纳米受限流体的巨正则配分函数发生急剧变化。用三体Axilrod-Teller-Muto项建模的多体贡献,导致从低密度相到高密度相的相变化学势向更高值移动,并解释了例如单组分液体配分函数值超过20%的偏差。使用统计力学形式,我们分析了这种贡献如何对某些性质(如压力、共存密度和焓)有强烈影响,而对其他性质(如吉布斯或亥姆霍兹自由能)有中等影响。我们还表征了三体项对吸附等温线和吸附热力学性质的影响,从而全面了解三体贡献对纳米受限流体热力学的影响。