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Crystallization-Induced Phase Segregation Based on Double-Crystalline Blends of Poly(3-hexylthiophene) and Poly(ethylene glycol)s

机译:聚(3-己基噻吩)和聚(乙二醇)的双结晶共混物的结晶诱导相分离

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摘要

Crystallization-induced vertical stratified structures were constructed based on double-crystalline poly(3-hexylthiophene) (P3HT)/poly(ethylene glycol)s (PEG) systems at room temperature, in which the P3HT crystallinity and the mechanism were investigated. Vertical stratified microstructures with highly crystalline P3HT network on the surface were formed when depositing from marginal solvents, while lateral phase-separated structures or low P3HT crystallinity were observed for good solvents. The morphological differences came from the solvent effect. In marginal solvents, p-xylene and dichloromethane, P3HT large-scale microcrystallites were generated in solution, which ensured the priority of P3HT crystalline sequence, and phase separation began in the liquid states. When the PEG matrix began to crystallize, great energy from which the second phase separation was induced drove P3HT crystallites to the surface, resulting in the formation of vertical stratified microstructures with highly crystalline P3HT network on the surface. The method, crystallization-induced phase segregation of crystalline–crystalline blends in marginal solvent, provides a facile way to construct vertically stratified structures, in which P3HT highly crystalline network is favored.
机译:基于室温下的双晶聚(3-己基噻吩)(P3HT)/聚(乙二醇)(PEG)体系构建了结晶诱导的垂直分层结构,研究了P3HT的结晶度及其机理。从边缘溶剂沉积时,会形成表面上具有高度结晶的P3HT网络的垂直分层微结构,而对于良好的溶剂,则观察到横向相分离的结构或低P3HT结晶度。形态差异来自溶剂效应。在边际溶剂对二甲苯和二氯甲烷中,溶液中生成P3HT大型微晶,这确保了P3HT晶序的优先级,并且在液相下开始了相分离。当PEG基质开始结晶时,诱导第二相分离的巨大能量将P3HT微晶带到表面,导致在表面上形成具有高度结晶P3HT网络的垂直分层微结构。该方法,即在边缘溶剂中结晶诱导的结晶-结晶共混物的相分离,为构造垂直分层的结构提供了一种简便的方法,其中P3HT高度结晶的网络受到青睐。

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