Lee Nam-Kyung, Diddens Diddo, Meyer Hendrik, Johner Albert
Institute of Fundamental Physics, Department of Physics, Sejong University, Seoul 05006, Korea.
Institut Charles Sadron, Université de Strasbourg, CNRS UPR22, 23 rue du Loess 67034, Strasbourg cedex 2, France.
Phys Rev Lett. 2017 Feb 10;118(6):067802. doi: 10.1103/PhysRevLett.118.067802. Epub 2017 Feb 8.
The reptation mechanism, introduced by de Gennes and Edwards, where a polymer diffuses along a fluffy tube, defined by the constraints imposed by its surroundings, convincingly describes the relaxation of long polymers in concentrated solutions and melts. We propose that the scale for the tube diameter is set by local chain segregation, which we study analytically. We show that the concept of local segregation is especially operational for confined geometries, where segregation extends over mesoscopic domains, drastically reducing binary contacts, and provide an estimate of the entanglement length. Our predictions are quantitatively supported by extensive molecular dynamics simulations on systems consisting of long, entangled chains.
由德热纳和爱德华兹提出的蠕动机制,即聚合物沿着由其周围环境施加的约束所定义的蓬松管扩散,令人信服地描述了浓溶液和熔体中长聚合物的松弛过程。我们提出管直径的尺度由局部链分离设定,我们对此进行了分析研究。我们表明,局部分离的概念在受限几何结构中特别有效,在这种结构中,分离延伸到介观域,极大地减少了二元接触,并提供了缠结长度的估计值。我们的预测得到了由长缠结链组成的系统的广泛分子动力学模拟的定量支持。