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聚合物在细菌悬浮液中的异常膨胀。

Unusual swelling of a polymer in a bacterial bath.

作者信息

Kaiser A, Löwen H

机构信息

Institut für Theoretische Physik II: Weiche Materie, Heinrich-Heine-Universität Düsseldorf, Universitätsstraße 1, D-40225 Düsseldorf, Germany.

出版信息

J Chem Phys. 2014 Jul 28;141(4):044903. doi: 10.1063/1.4891095.

Abstract

The equilibrium structure and dynamics of a single polymer chain in a thermal solvent is by now well-understood in terms of scaling laws. Here, we consider a polymer in a bacterial bath, i.e., in a solvent consisting of active particles which bring in nonequilibrium fluctuations. Using computer simulations of a self-avoiding polymer chain in two dimensions which is exposed to a dilute bath of active particles, we show that the Flory-scaling exponent is unaffected by the bath activity provided the chain is very long. Conversely, for shorter chains, there is a nontrivial coupling between the bacteria intruding into the chain which may stiffen and expand the chain in a nonuniversal way. As a function of the molecular weight, the swelling first scales faster than described by the Flory exponent, then an unusual plateau-like behaviour is reached and finally a crossover to the universal Flory behaviour is observed. As a function of bacterial activity, the chain end-to-end distance exhibits a pronounced non-monotonicity. Moreover, the mean-square displacement of the center of mass of the chain shows a ballistic behaviour at intermediate times as induced by the active solvent. Our predictions are verifiable in two-dimensional bacterial suspensions and for colloidal model chains exposed to artificial colloidal microswimmers.

摘要

就标度律而言,热溶剂中单个聚合物链的平衡结构和动力学目前已得到很好的理解。在此,我们考虑处于细菌浴中的聚合物,即在由引入非平衡涨落的活性粒子组成的溶剂中。通过对二维自回避聚合物链在活性粒子稀浴中的计算机模拟,我们表明,只要链非常长,弗洛里标度指数就不受浴活性的影响。相反,对于较短的链,侵入链中的细菌之间存在非平凡的耦合,这可能以非普适的方式使链变硬并伸展。作为分子量的函数,溶胀首先比弗洛里指数所描述的增长得更快,然后达到一种不寻常的平台状行为,最后观察到向普适弗洛里行为的转变。作为细菌活性的函数,链的端到端距离表现出明显的非单调性。此外,链质心的均方位移在中间时间呈现出由活性溶剂诱导的弹道行为。我们的预测在二维细菌悬浮液以及暴露于人工胶体微游动器的胶体模型链中是可验证的。

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