Matxinandiarena Eider, Peñas Mario Iván, Curole Brennan J, Król Monika, Polo Fonseca Lucas, Ruokolainen Janne, Grayson Scott M, Sangroniz Leire, Müller Alejandro J
POLYMAT and Department of Polymers and Advanced Materials: Physics, Chemistry and Technology, Faculty of Chemistry, University of the Basque Country UPV/EHU, Paseo Manuel de Lardizábal, 3, 20018 Donostia-San Sebastián, Spain.
Department of Chemistry, Tulane University, 6400 Freret Street, 2015 Percival Stern Hall, New Orleans, Louisiana 70118, United States.
Macromolecules. 2024 May 15;57(10):4906-4917. doi: 10.1021/acs.macromol.4c00527. eCollection 2024 May 28.
The chain architecture and topology of macromolecules impact their physical properties and final performance, including their crystallization process. In this work, comb polymers constituted by poly(ethylene glycol), PEG, side chains, and a dithiol-yne-based ring polymer backbone have been studied, focusing on the micro- and nanostructures of the system, thermal behavior, and crystallization kinetics. The designed comb system allows us to investigate the role of a ring backbone, the impact of varying the distance between two neighboring side chains, and the effect of the molecular weight of the side chain. The results reflect that the governing factor in the crystalline properties is the molar mass of the side chains and that the tethering of PEG chains to the ring backbone brings important constraints to the crystallization process, reducing the crystallinity degree and slowing down the crystallization kinetics in comparison to analogue PEG homopolymers. We demonstrate that the effect of spatial hindrance in the comb-like PEG polymers drives the morphology toward highly ordered, self-assembled, semicrystalline superstructures with either extended interdigitated chain crystals or novel (for comb polymers) interdigitated folded chain lamellar crystals. These structures depend on PEG molecular weight, the distance between neighboring tethered PEG chains, and the crystallization conditions (nonisothermal versus isothermal). This work sheds light on the role of chain architecture and topology in the structure of comb-like semicrystalline polymers.
大分子的链结构和拓扑结构会影响其物理性质和最终性能,包括其结晶过程。在这项工作中,研究了由聚乙二醇(PEG)侧链和基于二硫醇-炔的环状聚合物主链构成的梳状聚合物,重点关注该体系的微观和纳米结构、热行为以及结晶动力学。所设计的梳状体系使我们能够研究环状主链的作用、改变两个相邻侧链之间距离的影响以及侧链分子量的影响。结果表明,决定结晶性能的主要因素是侧链的摩尔质量,并且与类似的PEG均聚物相比,PEG链连接到环状主链上给结晶过程带来了重要限制,降低了结晶度并减缓了结晶动力学。我们证明,梳状PEG聚合物中空间位阻的作用促使形态朝着具有伸展的相互穿插链晶体或新型(对于梳状聚合物而言)相互穿插折叠链片晶的高度有序、自组装的半结晶超结构发展。这些结构取决于PEG分子量、相邻连接的PEG链之间的距离以及结晶条件(非等温与等温)。这项工作揭示了链结构和拓扑结构在梳状半结晶聚合物结构中的作用。