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粗细不同硬棒二元混合物中的向列相-向列相相分离:类昂萨格理论的结果

Nematic-nematic phase separation in binary mixtures of thick and thin hard rods: results from Onsager-like theories.

作者信息

Varga Szabolcs, Purdy Kirstin, Galindo Amparo, Fraden Seth, Jackson George

机构信息

Department of Physics, University of Veszprém, H-8201 Veszprém, P.O. Box 158, Hungary.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Nov;72(5 Pt 1):051704. doi: 10.1103/PhysRevE.72.051704. Epub 2005 Nov 7.

Abstract

The fundamental nature of the nematic-nematic phase separation in binary mixtures of rigid hard rods is analyzed within the Onsager second-virial theory and the extension of Parsons and Lee which includes a treatment of the higher-body contributions. The particles of each component are modeled as hard spherocylinders of different diameter , but equal length . In the case of a system which is restricted to be fully aligned (parallel rods), we provide an analytical solution for the spinodal boundary for the limit of stability of demixing; only a single region of coexistence bounded at lower pressures (densities) by a critical point is possible for such a system. The full numerical solution with the Parsons-Lee extension also indicates that, depending on the length of the particles, there is a range of values of the diameter ratio where the phase coexistence is closed off by a critical point at lower pressure. A second region of coexistence can be found at even lower pressures for certain values of the parameters; this region is bounded by an "upper" critical point. The two coexistence regions can also merge to give a single region of coexistence extending to very high pressure without a critical point. By including the higher-order contributions to the excluded volume (end effects) in the Onsager theory, we prove analytically that the existence of the lower critical point is a direct consequence of the finite size of the particles. A new analytical equation of state is derived for the nematic phase using the Gaussian approximation. In the case of Onsager limit (infinite aspect ratio), we show that the phase behavior obtained using the Parsons-Lee approach substantially deviates from that with the Onsager theory for the transition due to the nonvanishing third and higher order virial coefficients. We also provide a detailed discussion of the phase behavior of recent experimental results for mixtures of thin and thick rods of the same length, for which the Onsager and Parsons-Lee theories can provide a qualitative description.

摘要

在昂萨格第二维里理论以及帕森斯和李的扩展理论(其中包括对高阶贡献的处理)框架内,分析了刚性硬棒二元混合物中向列相 - 向列相分离的基本性质。每个组分的粒子被建模为直径不同但长度相等的硬球柱体。对于一个被限制为完全排列(平行棒)的系统,我们给出了相分离稳定性极限的旋节线边界的解析解;对于这样的系统,在较低压力(密度)下,仅存在一个由临界点界定的共存区域。帕森斯 - 李扩展理论的完整数值解还表明,根据粒子的长度,存在一个直径比的取值范围,在此范围内,相共存会在较低压力下被一个临界点封闭。对于某些参数值,在更低压力下可以找到第二个共存区域;该区域由一个“上”临界点界定。这两个共存区域也可以合并,形成一个延伸到非常高压力且没有临界点的单一共存区域。通过在昂萨格理论中纳入对排斥体积(端部效应)的高阶贡献,我们通过解析证明了较低临界点的存在是粒子有限尺寸的直接结果。利用高斯近似推导了向列相的一个新的解析状态方程。在昂萨格极限(无限长径比)的情况下,我们表明,由于非零的第三及更高阶维里系数,使用帕森斯 - 李方法得到的相变行为与昂萨格理论有很大偏差。我们还详细讨论了相同长度的细棒和粗棒混合物的近期实验结果的相行为,昂萨格理论和帕森斯 - 李理论可以对其进行定性描述。

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