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活性-钝化聚合物混合物的界面性质

Interfacial Properties of Active-Passive Polymer Mixtures.

作者信息

Smrek Jan, Kremer Kurt

机构信息

Max Planck Institute for Polymer Research, Ackermannweg 10, 55127 Mainz, Germany.

出版信息

Entropy (Basel). 2018 Jul 10;20(7):520. doi: 10.3390/e20070520.

Abstract

Active matter consists of particles that dissipate energy, from their own sources, in the form of mechanical work on their surroundings. Recent interest in active-passive polymer mixtures has been driven by their relevance in phase separation of (e.g., transcriptionally) active and inactive (transcriptionally silent) DNA strands in nuclei of living cells. In this paper, we study the interfacial properties of the phase separated steady states of the active-passive polymer mixtures and compare them with equilibrium phase separation. We model the active constituents by assigning them stronger-than-thermal fluctuations. We demonstrate that the entropy production is an accurate indicator of the phase transition. We then construct phase diagrams and analyze kinetic properties of the particles as a function of the distance from the interface. Studying the interface fluctuations, we find that they follow the capillary waves spectrum. This allows us to establish a mechanistic definition of the interfacial stiffness and its dependence on the relative level of activity with respect to the passive constituents. We show how the interfacial width depends on the activity ratio and comment on the finite size effects. Our results highlight similarities and differences of the non-equilibrium steady states with an equilibrium phase separated polymer mixture with a lower critical solution temperature. We present several directions in which the non-equilibrium system can be studied further and point out interesting observations that indicate general principles behind the non-equilibrium phase separation.

摘要

活性物质由能够从自身来源以对周围环境进行机械功的形式耗散能量的粒子组成。近期对活性 - 被动聚合物混合物的研究兴趣源于它们与活细胞核中(例如转录)活性和非活性(转录沉默)DNA链相分离的相关性。在本文中,我们研究了活性 - 被动聚合物混合物相分离稳态的界面性质,并将其与平衡相分离进行比较。我们通过赋予活性成分比热涨落更强的涨落来对其进行建模。我们证明熵产生是相变的准确指标。然后我们构建相图,并分析粒子的动力学性质作为到界面距离的函数。通过研究界面涨落,我们发现它们遵循毛细波谱。这使我们能够建立界面刚度的机制定义及其对相对于被动成分的相对活性水平的依赖性。我们展示了界面宽度如何依赖于活性比,并对有限尺寸效应进行了评论。我们的结果突出了非平衡稳态与具有较低临界溶解温度的平衡相分离聚合物混合物之间的异同。我们提出了几个可以进一步研究非平衡系统的方向,并指出了表明非平衡相分离背后一般原理的有趣观察结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00d0/7513047/76ca6e8674a4/entropy-20-00520-g0A1.jpg

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