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球形受限体系中的半柔性聚合物:双极取向序与网球态

Semiflexible Polymers in Spherical Confinement: Bipolar Orientational Order Versus Tennis Ball States.

作者信息

Nikoubashman Arash, Vega Daniel A, Binder Kurt, Milchev Andrey

机构信息

Institute of Physics, Johannes Gutenberg University Mainz, Staudingerweg 7, 55128 Mainz, Germany.

Department of Physics, Universidad Nacional del Sur-IFISUR-CONICET, 8000 Bahía Blanca, Argentina.

出版信息

Phys Rev Lett. 2017 May 26;118(21):217803. doi: 10.1103/PhysRevLett.118.217803.

Abstract

Densely packed semiflexible polymers with contour length L confined in spheres with radius R of the same order as L cannot exhibit uniform nematic order. Depending on the chain stiffness (which we vary over a wide range), highly distorted structures form with topological defects on the sphere surface. These structures are completely different from previously observed ones of very long chains winding around the inner surface of spheres and from nematic droplets. At high densities, a thin shell of polymers close to the sphere surface exhibits a tennis ball texture due to the confinement-induced gradual bending of polymer bonds. In contrast, when the contour length of the chains is significantly smaller than the radius of the confining sphere, a few bent smectic layers form in the sphere. Molecular dynamics simulations demonstrate these complex structures, and suitable order parameters characterizing them are proposed.

摘要

轮廓长度为L的密集堆积半柔性聚合物被限制在半径R与L同量级的球体中时,无法呈现均匀的向列相序。根据链的刚性(我们在很宽的范围内改变其刚性),会形成高度扭曲的结构,球体表面存在拓扑缺陷。这些结构与之前观察到的非常长的链缠绕在球体内表面的结构以及向列相液滴完全不同。在高密度下,靠近球体表面的一层薄聚合物壳由于聚合物键的受限诱导逐渐弯曲而呈现出网球纹理。相比之下,当链的轮廓长度明显小于限制球体的半径时,球体内会形成一些弯曲的近晶层。分子动力学模拟展示了这些复杂结构,并提出了表征它们的合适序参量。

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