Hou Chunyue, Wang Junjie, Wang Peng, Cui Jiahui, Wang Shaojuan, Xin Rui, Li Huihui, Sun Xiaoli, Ren Zhongjie, Yan Shouke
Key Laboratory of Rubber-Plastics, Qingdao University of Science and Technology, Qingdao, 266042, China.
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.
Adv Sci (Weinh). 2024 Jan;11(2):e2207707. doi: 10.1002/advs.202207707. Epub 2023 Nov 23.
Directed self-assembly of materials into patterned structures is of great importance since the performance of them depends remarkably on their multiscale hierarchical structures. Therefore, purposeful structural regulation at different length scales through crystallization engineering provides an opportunity to modify the properties of polymeric materials. Here, an epitaxy-directed self-assembly strategy for regulating the pattern structures including phase structure as well as crystal modification and orientation of each component for both copolymers and polymer blends is reported. Owing to the specific crystallography registration between the depositing crystalline polymers and the underlying crystalline substrate, not only order phase structure with controlled size at nanometer scale but also the crystal structure and chain orientation of each component within the separated phases for both copolymers and polymer blend systems can be precisely regulated.
将材料定向自组装成图案化结构非常重要,因为它们的性能显著取决于其多尺度层次结构。因此,通过结晶工程在不同长度尺度上进行有目的的结构调控,为改性聚合物材料的性能提供了契机。在此,报道了一种外延定向自组装策略,用于调控共聚物和聚合物共混物的图案结构,包括相结构以及各组分的晶体改性和取向。由于沉积的结晶聚合物与下层结晶基底之间存在特定的晶体学配准,不仅可以精确调控纳米尺度上具有可控尺寸的有序相结构,还能精确调控共聚物和聚合物共混体系中各分离相内各组分的晶体结构和链取向。