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Static and dynamic properties of a semiflexible polymer in a crowded environment with randomly distributed immobile nanoparticles

机译:具有随机分布的固定纳米粒子的拥挤环境中半弯曲聚合物的静态和动态性质

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摘要

Molecular dynamic simulations are performed for semiflexible polymers in a crowded environment with randomly distributed immobile nanoparticles (NPs). Herein, the effects of chain stiffness (ky), polymer-NP interaction (ePN), and concentration of NPs (CNP) on the static and dynamic properties of the polymers have been studied. The mean square radius of gyration R-G(2) can be increased, decreased, or unchanged depending on these three variables. For a fully flexible polymer (ky = 0), R-G(2) changes nonmonotonously with ePN and CNP. However, for a semiflexible polymer (ky = 10 with its persistence length larger than the inter-particle distance of the NPs), R-G(2) decreases monotonously or remains unchanged with an increase in ePN or CNP; this indicates the softening of polymer by the NPs. Moreover, the translational diffusion and rotation of the polymer are retarded by the NPs. Subdiffusion is observed for both the fully flexible polymer and semiflexible polymer at a sufficiently large ePN. The effect of NPs on the translational diffusion is more obvious for the fully flexible polymer because more monomers are in contact with the NPs in the fully flexible polymer. In contrast, the effect of NPs on rotation is more obvious for the semiflexible polymer because it is in contact with more NPs. Furthermore, the rotational relaxation time tR of the semiflexible polymer increases faster with an increase in ePN or CNP than that of the fully flexible polymer.
机译:在具有随机分布的固定纳米颗粒(NPS)中拥挤的环境中的半弯曲聚合物进行分子动态模拟。在此,已经研究了链刚度(KY),聚合物-NP相互作用(EPN)和NPS(CNP)浓度对聚合物的静态和动态性质的影响。旋转的平均方形半径& R-G(2)&根据这三个变量可以增加,减少或不变。对于完全柔性的聚合物(KY = 0),& R-G(2)&用EPN和CNP不改变非单调。但是,对于半折叠的聚合物(Ky = 10,其持续长度大于NPS的颗粒间距离),& R-G(2)&单调减少或随着EPN或CNP的增加而保持不变;这表明通过NPS的聚合物软化。此外,聚合物的平移扩散和旋转被NPS延迟。对于全柔性聚合物和半弯曲的聚合物,观察到沉体的柔性聚合物,以足够大的EPN。对于完全柔性聚合物,NP对平移扩散对平移扩散的影响更为明显,因为更多的单体在完全柔性聚合物中与NP接触。相比之下,对于半弯曲的聚合物,NP对旋转的影响更为明显,因为它与更多NPS接触。此外,半弯曲聚合物的旋转弛豫时间Tr随比完全柔性聚合物的Epn或CNP增加而增加。

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