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Uniform 1D Micelles and Patchy & Block Comicelles via Scalable, One-Step Crystallization-Driven Block Copolymer Self-Assembly

机译:均匀的1D胶束和斑块和嵌段式通过可缩放的一步结晶驱动的嵌段共聚物自组装

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摘要

Fiber-like (1D) core-crystalline micelles of uniform length can be obtained in protocols involving multiple steps from block copolymers (BCPs) in which crystallization of the core-forming polymer drives the self-assembly. Here we report a systematic study that shows that adding small amounts (<5 w/w %) of a homopolymer corresponding to the core-forming block of the BCP enables uniform ID micelles (mean lengths L_n = 0.6 to 9.7 μm) to be obtained in a single step, simply by heating the mixture in a selective solvent followed by slow cooling. A series of poly(ferrocenyldimethylsilane) (PFS) BCPs with different corona-forming blocks and different compositions as well as PFS homopolymers of different lengths were examined. Dye labeling and confocal fluorescence microscopy showed that the homopolymer ends up in the center of the micelle, signaling that it served as the initial seed for epitaxial micelle growth. The rate of unimer addition was strongly enhanced by the length of the PFS block, and this enabled more complex structures to be formed in one-pot self-assembly experiments from mixtures of two or three BCPs with different PFS block lengths. Furthermore, BCP mixtures that included PFS-b-PI (PI = polyisoprene) and PFS-b-PDMS with similar PFS block lengths resulted in simultaneous addition to growing micelles, resulting in a patchy block that could be visualized by staining the vinyl groups of the PI with Pt nanoparticles. This approach also enabled scale up, so that uniform 1D micelles of controlled architecture can be obtained at concentrations of 10 w/w % solids or more.
机译:纤维状(1D)均匀长度的纤芯结晶胶束可以在涉及来自嵌段共聚物(BCP)的多个步骤的方案中,其中芯形成聚合物的结晶驱动自组装。在这里,我们报告了一个系统研究,表明,添加了与BCP的核心形成块的少量(<5w / w%)的均聚物使得能够获得均匀的ID胶束(平均长度L_n = 0.6至9.7μm)在单一的步骤中,只需通过在选择性溶剂中加热混合物,然后缓慢冷却。检查具有不同电晕 - 形成块和不同组合物的一系列聚(二氧锰二甲基硅烷)(PFS)BCP以及不同长度的PFS均聚物。染料标记和共聚焦荧光显微镜表明,均聚物最终位于胶束的中心,表示其作为外延胶束生长的初始种子。通过PFS块的长度强烈地增强了卸加法的速率,并且这使得能够在具有不同PFS块长度的两种或三个BCP的混合物中形成更复杂的结构。此外,包括PFS-B-PI(PI =聚异戊二烯)和具有相似PFS嵌段长度的PFS-B-PDMS的BCP混合物导致生长胶束的同时加入,导致通过染色乙烯基来可视化的斑块块具有Pt纳米颗粒的PI。该方法也能够缩放,因此可以以10W / W%的固体或更高的浓度获得控制架构的均匀1D胶束。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第16期|6266-6280|共15页
  • 作者单位

    Department of Chemistry University of Toronto Toronto Ontario M5S 3H6 Canada;

    School of Materials Science and Engineering South China University of Technology Guangzhou S10640 P. R. China;

    Department of Materials Science and Engineering University of Toronto Toronto Ontario M5S 3E4 Canada;

    Department of Chemistry University of Toronto Toronto Ontario M5S 3H6 Canada Department of Materials Science and Engineering and Department of Chemical Engineering and Applied Chemistry University of Toronto Toronto Ontario MSS 3E4 Canada;

    Department of Chemistry University of Toronto Toronto Ontario M5S 3H6 Canada;

    Department of Chemistry University of Victoria Victoria British Columbia V8W 3 V6 Canada;

    Department of Chemistry University of Toronto Toronto Ontario MSS 3H6 Canada Department of Chemical Engineering and Applied Chemistry University of Toronto Toronto Ontario MSS 3E2 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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