Lu Songyan, Chen Min, Li Hanying
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, International Research Center for X Polymers, ZJU-YST Joint Research Center for Fundamental Science, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.
Materials (Basel). 2025 Sep 7;18(17):4196. doi: 10.3390/ma18174196.
Manipulating polymer crystallization behavior and structure without altering chemical composition remains a core challenge in polymer crystallography. Molecular weight, as an intrinsic material property, governs the crystallization process from nucleation through growth. Synthetic polymer materials exhibit molecular weight distribution (MWD), resulting in polydisperse polymer chains within one system. This MWD drives distinct crystalline structures, whereas synergistic crystallization behaviors arise among chains of various lengths. MWD yields complex crystallization behaviors. Especially, spatial molecular weight distribution induces novel crystalline textures in polymer materials. Elucidating the crystallization mechanisms is vital for understanding structure-property relationships in polymers. Herein, the recent advances in the various influences of MWD on polymer crystal textures are systematically demonstrated.
在不改变化学组成的情况下调控聚合物的结晶行为和结构仍然是聚合物晶体学中的一个核心挑战。分子量作为一种内在的材料属性,控制着从成核到生长的结晶过程。合成聚合物材料呈现出分子量分布(MWD),导致在一个体系内聚合物链具有多分散性。这种MWD驱动形成不同的晶体结构,而不同长度的链之间会出现协同结晶行为。MWD产生复杂的结晶行为。特别是,空间分子量分布会在聚合物材料中诱导出新颖的晶体织构。阐明结晶机制对于理解聚合物的结构-性能关系至关重要。在此,系统地展示了MWD对聚合物晶体织构的各种影响方面的最新进展。