Opdam Joeri, Gandhi Poshika, Kuhnhold Anja, Schilling Tanja, Tuinier Remco
Laboratory of Physical Chemistry, Department of Chemical Engineering and Chemistry, & Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, P. O. Box 513, 5600 MB, Eindhoven, The Netherlands.
Institute of Physics, University of Freiburg, Hermann-Herder-Str. 3, 79104 Freiburg, Germany.
Phys Chem Chem Phys. 2022 May 18;24(19):11820-11827. doi: 10.1039/d2cp00477a.
In this paper we study excluded volume interactions, the free volume fraction available, and the phase behaviour, in mixtures of hard spheres (HS) and hard rods, modeled as spherocylinders. We use free volume theory (FVT) to predict various physical properties and compare to Monte Carlo computer simulations. FVT is used at two levels. We use the original FVT approach in which it is assumed that the correlations of the HS are not affected by the rods. This is compared to a recent, more rigorous, FVT approach which includes excluded volume interactions between the different components at all levels. We find that the novel rigorous FVT approach agrees well with computer simulation results at the level of free volume available, as well as for the phase stability. The FVT predictions show significant quantitative and qualitative deviations with respect to the original FVT approach. The phase transition curves are systematically at higher rod concentrations than previously predicted. Furthermore, the calculations revealed that a certain asphericity is required to induce isostructural fluid-fluid coexistence and the stability region is highly dependent on the size ratio between the rods and the spheres.
在本文中,我们研究了硬球(HS)和硬棒混合物中的排斥体积相互作用、可用自由体积分数以及相行为,这些硬棒被建模为球柱体。我们使用自由体积理论(FVT)来预测各种物理性质,并与蒙特卡罗计算机模拟结果进行比较。FVT在两个层面上使用。我们采用原始的FVT方法,即假设HS的相关性不受棒的影响。将其与最近一种更严格的FVT方法进行比较,后者在各个层面都考虑了不同组分之间的排斥体积相互作用。我们发现,这种新颖的严格FVT方法在可用自由体积水平以及相稳定性方面与计算机模拟结果吻合良好。FVT预测结果与原始FVT方法相比存在显著的定量和定性偏差。相转变曲线在系统上处于比先前预测更高的棒浓度处。此外,计算结果表明,需要一定的非球形度才能诱导同结构的流体 - 流体共存,并且稳定区域高度依赖于棒与球之间的尺寸比。