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Protonation-Induced Microphase Separation in ThinFilms of a Polyelectrolyte-Hydrophilic Diblock Copolymer

机译:质子诱导的薄相微分离聚电解质-亲水性二嵌段共聚物的薄膜

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摘要

Block copolymers composed of poly(oligo ethylene glycol methyl ether methacrylate) and poly(2-vinylpyridine) are disordered in the neat state but can be induced to order by protonation of the P2VP block, demonstrating a tunable and responsive method for triggering assembly in thin films. Comparison of protonation with the addition of salts shows that microphase separation is due to selective protonation of the P2VP block. Increasing acid incorporation and increasing 2-vinylpyridine content for P2VP minority copolymers both promote increasingly phase-separated morphologies, consistent with protonation increasing the effective strength of segregation between the two blocks. The self-assembled nanostructures formed after casting from acidic solutions may be tuned based on the amount and type of acid incorporation as well as the annealing treatment applied after casting, where both aqueous and polar organic solvents are shown to be effective. Therefore, POEGMA-b-P2VP is a novel ion-containing block copolymer whose morphologies can be facilely tuned during casting and processing by controlling its exposure to acid.
机译:由聚(低聚乙二醇甲基醚甲基丙烯酸甲酯)和聚(2-乙烯基吡啶)组成的嵌段共聚物在纯净状态下是无序的,但可以通过P2VP嵌段的质子化来诱导有序化,这证明了一种可调节的响应方法可以触发薄型组装电影。质子化与添加盐的比较表明,微相分离归因于P2VP嵌段的选择性质子化。 P2VP少数族裔共聚物增加的酸结合量和增加的2-乙烯基吡啶含量都促进相分离的形态增加,这与质子化增加了两个嵌段之间的有效分离强度有关。由酸性溶液浇铸后形成的自组装纳米结构可基于酸掺入的量和类型以及浇铸后施加的退火处理进行调整,其中水和极性有机溶剂均显示有效。因此,POEGMA-b-P2VP是一种新型的含离子嵌段共聚物,通过控制其在酸中的暴露,可以在浇铸和加工过程中轻松调整其形态。

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