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Entropy-Induced Separation of Binary Semiflexible Ring Polymer Mixtures in Spherical Confinement

机译:球形约束中的二元半柔性环聚合物混合物的熵诱导分离

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摘要

Coarse-grained molecular dynamics simulations are used to investigate the conformations of binary semiflexible ring polymers (SRPs) of two different lengths confined in a hard sphere. Segregated structures of SRPs in binary mixtures are strongly dependent upon the number density of system ( ), the bending energy of long SRPs ( , long), and the chain length ratio of long to short SRPs (α). With a low or a weak , long at a small ratio α, long SRPs are immersed randomly in the matrix of short SRPs. As and bending energy of long SRPs ( , long) are increased up to a certain value for a large ratio α, a nearly complete segregation between long and short SRPs is observed, which can be further characterized by the ratio of tangential and radial components of long SRPs velocity. These explicit segregated structures of the two components in spherical confinement are induced by a delicate competition between the entropic excluded volume (depletion) effects and bending contributions.
机译:粗粒度的分子动力学模拟用于研究硬球体中两种不同长度的二元半柔性环聚合物(SRP)的构象。二元混合物中SRP的分离结构在很大程度上取决于系统的数密度(),长SRP的弯曲能量()和长与短SRP的链长比(α)。在α值小的情况下,长的SRP较低或较弱,长的SRP随机浸入短SRP的矩阵中。当长SRPs(,long)的弯曲能和弯曲能量增大到一定值时,α值较大,观察到长SRPs和短SRPs之间几乎完全隔离,这可以通过切向分量与径向分量之比进一步表征。 SRP速度长。球形约束中两个组件的这些明确的隔离结构是由熵排除体积(损耗)效应和弯曲贡献之间的微妙竞争引起的。

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