Tsalikis Dimitrios G, Mavrantzas Vlasis G
Department of Chemical Engineering, University of Patras and FORTH/ICE-HT, Patras, GR 26504, Greece.
Department of Materials, Polymer Physics, ETH Zürich, HCI H 543, CH-8093 Zürich, Switzerland.
ACS Macro Lett. 2014 Aug 19;3(8):763-766. doi: 10.1021/mz5002096. Epub 2014 Jul 23.
We report results from an atomistic molecular dynamics simulation study of ring-linear poly(ethylene oxide) (PEO) melts followed by a topological reduction to ensembles of primitive paths and a detailed geometric analysis using vector calculus, which reveals considerable cyclic threading by the linear chains. The simulations have been conducted using ring-linear PEO blends of the same size, over a series of molecular lengths and compositions. For PEO melts characterized by molecular weight (MW) greater than 10044 g/mol, in particular, our computations reveal the occurrence of multiple threading events (penetrations). We further find that the time it takes a linear molecule that threads a cyclic one to fully pass through the latter can be more than 1 order of magnitude larger than the corresponding relaxation time of the ring in its own melt. Our analysis implies that dynamics in ring-linear polymer blends is highly heterogeneous, with many of the threadings being long-lived and with the linear chains (even when present in small amounts) dramatically obstructing the mobility of rings.
我们报告了一项关于环状 - 线性聚环氧乙烷(PEO)熔体的原子分子动力学模拟研究结果,随后对其进行拓扑简化以得到原始路径的集合,并使用矢量微积分进行详细的几何分析,结果表明线性链存在大量的环状穿线现象。模拟是使用相同尺寸的环状 - 线性PEO共混物,在一系列分子长度和组成条件下进行的。特别是对于分子量(MW)大于10044 g/mol的PEO熔体,我们的计算揭示了多次穿线事件(穿透)的发生。我们进一步发现,一个线性分子穿过一个环状分子并完全通过后者所需的时间可能比环在其自身熔体中的相应弛豫时间大一个多数量级。我们的分析表明,环状 - 线性聚合物共混物中的动力学是高度不均匀的,许多穿线现象持续时间很长,并且线性链(即使含量很少)也会极大地阻碍环的流动性。