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非刚性球形孔中刚性棒的分子排列

Molecular alignment of rigid rods in nonrigid spherical pores.

作者信息

Chen Yong, Shew Chwen-Yang, LeFave Clare V, Ajavon Antoinette, Fynewever Herbert

机构信息

Department of Chemistry, City University of New York College of Staten Island, Staten Island, New York 10314, USA.

出版信息

J Chem Phys. 2004 Jul 15;121(3):1578-86. doi: 10.1063/1.1758934.

Abstract

We have investigated the orientation ordering of two shish-kebab chains confined by spherically harmonic potentials through Monte Carlo simulations and asymptotic analysis. The rigid rod is modeled as shish-kebab chains consisting of tangent hard spheres aligned in the same axis, and the harmonic potential is chosen to model nonrigid cavities. We first show that the interactions between a rod and the spherically harmonic potential are independent of chain orientation, indicating that the alignment of two confined rods arises from the excluded volume interactions alone. In the strong fields, the order parameter of two confined rods converges to different values, depending on the parity of chain length. From asymptotic order parameters, we find that the rods of odd-number beads rotate more freely even under the limiting strong confinement. However, the two rods of even-number beads are essentially trapped in a configuration of perpendicular alignment through intercalation of their central grooves. We attribute the dependence of the parity of chain length to the different locations of the center-of-mass in a rod for these two cases. Furthermore, we compare the shish-kebab chains with different rod models in the simulations, and utilize these models to explore the effect of the local rod smoothness on molecular alignment. Our findings suggest that increasing local rod smoothness enhances the rotational degree of freedom for confined rods, and the effect of local rod roughness emerges under strong enough applied potentials.

摘要

我们通过蒙特卡罗模拟和渐近分析研究了受球谐势约束的两条串珠链的取向有序性。刚性杆被建模为由沿同一轴排列的相切硬球组成的串珠链,并且选择谐势来模拟非刚性腔体。我们首先表明,杆与球谐势之间的相互作用与链的取向无关,这表明两条受限杆的排列仅源于排除体积相互作用。在强场中,两条受限杆的序参量收敛到不同的值,这取决于链长的奇偶性。从渐近序参量中,我们发现即使在极限强约束下,奇数个珠子的杆旋转得更自由。然而,偶数个珠子的两条杆通过其中心凹槽的嵌入基本上被困在垂直排列的构型中。我们将链长奇偶性的依赖性归因于这两种情况下杆中质心的不同位置。此外,我们在模拟中比较了具有不同杆模型 的串珠链,并利用这些模型探索局部杆光滑度对分子排列的影响。我们的研究结果表明,增加局部杆光滑度会提高受限杆的旋转自由度,并且在足够强的外加势下会出现局部杆粗糙度的影响。

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