Department of Chemistry, Temple University, Philadelphia, Pennsylvania 19122, United States.
Institute for Computational Molecular Science, Temple University, Philadelphia, Pennsylvania 19122, United States.
J Phys Chem B. 2020 Jun 11;124(23):4793-4804. doi: 10.1021/acs.jpcb.0c01972. Epub 2020 Jun 2.
Spatial distributions are presented that quantitatively capture how polymer properties (e.g., segment alignment, density, and potential energy) vary with distance from nascent polymer crystals (nuclei) in prototypical polyethylene melts. It is revealed that the spatial extent of nuclei and their interfaces is metric-dependent as is the extent to which nucleus interiors are solid-like. As distance from a nucleus increases, some properties, such as density, decay to melt-like behavior more rapidly than polymer segment alignment, indicating that a polymer nucleus resides in a nematic-like droplet. This nematic-like droplet region coincides with enhanced formation of ordered polymer segments that are not part of the nucleus. It is more favorable to find nonconstituent ordered polymer segments near a nucleus than in the surrounding metastable melt, pointing to the possibility of one nucleus inducing the formation of other nuclei. In this vein, there is also a second region of enhanced ordering that lies along the nematic director of a nucleus, but beyond its nematic droplet and fold regions. These results indicate that crystal stacking, a key characteristic of lamellae in semicrystalline polymeric materials, begins to emerge during the earliest stages of polymer crystallization (i.e., crystal nucleation). More generally, the findings of this study provide a conceptual bridge between polymer crystal nucleation under nonflow and flow conditions and are used to rationalize previous results.
呈现了定量捕捉聚合物性质(例如,链段取向、密度和位能)如何随距离初生聚合物晶体(核)变化的空间分布。结果表明,核及其界面的空间范围与度量有关,核内部的固体状程度也与度量有关。随着距离核的增加,一些性质,如密度,比聚合物链段取向更快地衰减到熔体样行为,表明聚合物核位于向列状液滴中。这个向列状液滴区域与增强的有序聚合物链段的形成相吻合,这些链段不是核的一部分。在核附近找到非组成有序聚合物链段比在周围亚稳熔体中更容易,这表明一个核有可能诱导其他核的形成。在这方面,还有第二个增强有序的区域,位于核的向列 director 上,但超出其向列液滴和折叠区域。这些结果表明,晶体堆积,半晶态聚合物材料中晶片的关键特征,在聚合物结晶的最早阶段(即晶体成核)就开始出现。更一般地说,本研究的结果在非流动和流动条件下的聚合物晶体成核之间提供了一个概念上的桥梁,并用于合理化以前的结果。