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通过事件驱动的布朗动力学模拟研究刚性长细棒状胶体的各向同性-向列型旋节线

Isotropic-nematic spinodals of rigid long thin rodlike colloids by event-driven Brownian dynamics simulations.

作者信息

Tao Yu-Guo, den Otter W K, Dhont J K G, Briels W J

机构信息

Computational Biophysics, Faculty of Science and Technology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.

出版信息

J Chem Phys. 2006 Apr 7;124(13):134906. doi: 10.1063/1.2180251.

Abstract

The isotropic-nematic spinodals of solutions of rigid spherocylindrical colloids with various shape anisotropies L/D in a wide range from 10 to 60 are investigated by means of Brownian dynamics simulations. To make these simulations feasible, we developed a new event-driven algorithm that takes the excluded volume interactions between particles into account as instantaneous collisions, but neglects the hydrodynamic interactions. This algorithm is applied to dense systems of highly elongated rods and proves to be efficient. The calculated isotropic-nematic spinodals lie between the previously established binodals in the phase diagram and extrapolate for infinitely long rods to Onsager's [Ann. N. Y. Acad. Sci. 51, 627 (1949)] theoretical predictions. Moreover, we investigate the shear induced shifts of the spinodals, qualitatively confirming the theoretical prediction of the critical shear rate at which the two spinodals merge and the isotropic-nematic phase transition ceases to exist.

摘要

通过布朗动力学模拟研究了具有各种形状各向异性L/D(范围从10到60)的刚性球柱形胶体溶液的各向同性-向列型旋节线。为了使这些模拟可行,我们开发了一种新的事件驱动算法,该算法将粒子间的排除体积相互作用视为瞬时碰撞,但忽略了流体动力学相互作用。该算法应用于高度细长棒的致密系统,证明是有效的。计算得到的各向同性-向列型旋节线位于相图中先前确定的双节线之间,并外推到无限长棒时与昂萨格的[《纽约科学院学报》51, 627 (1949)]理论预测相符。此外,我们研究了旋节线的剪切诱导位移,定性地证实了临界剪切速率的理论预测,在该临界剪切速率下,两条旋节线合并,各向同性-向列型相变不再存在。

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