Michieletto Davide, Marenduzzo Davide, Orlandini Enzo, Turner Matthew S
SUPA, School of Physics and Astronomy, University of Edinburgh, Peter Guthrie Tait Road, Edinburgh EH9 3FD, UK.
Dipartimento di Fisica e Astronomia, Sezione INFN, Università di Padova, Via Marzolo 8, 35131 Padova, Italy.
Polymers (Basel). 2017 Aug 8;9(8):349. doi: 10.3390/polym9080349.
Elucidating the physics of a concentrated suspension of ring polymers, or of an ensemble of ring polymers in a complex environment, is an important outstanding question in polymer physics. Many of the characteristic features of these systems arise due to topological interactions between polymers, or between the polymers and the environment, and it is often challenging to describe this quantitatively. Here we review recent research which suggests that a key role is played by inter-ring threadings (or penetrations), which become more abundant as the ring size increases. As we discuss, the physical consequences of such threadings are far-reaching: for instance, they lead to a topologically-driven glassy behaviour of ring polymer melts under pinning perturbations, while they can also account for the shape of experimentally observed patterns in two-dimensional gel electrophoresis of DNA knots.
阐明环状聚合物浓悬浮液或处于复杂环境中的环状聚合物集合体的物理性质,是高分子物理中一个重要的悬而未决的问题。这些体系的许多特征源于聚合物之间、或聚合物与环境之间的拓扑相互作用,而对其进行定量描述往往具有挑战性。在此,我们回顾近期的研究,这些研究表明环间穿线(或穿透)起着关键作用,且随着环尺寸的增加,这种穿线现象会变得更加普遍。正如我们所讨论的,这种穿线的物理影响是深远的:例如,它们会导致在钉扎微扰下环状聚合物熔体出现拓扑驱动的玻璃态行为,同时它们也能解释DNA结二维凝胶电泳实验中观察到的图案形状。