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The effect of steric repulsion between highly branched hydrophilic blocks on inverse cubic mesophase formation in block copolymers

机译:高分分支亲水性嵌段在嵌段共聚物中反立方中间相形成的高度分支亲水性嵌段的影响

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The solution-based self-assembly of block copolymers (BCPs) into nanoparticulate or microparticulate inverse cubic mesophases, or polymer cubosomes, is of growing interest. This phenomenon could yield new polymeric mesoporous materials with three-dimensionally organized mazes of large water channels. In addition to the ratio of its hydrophilic and hydrophobic blocks, the architecture of a BCP critically influences self-assembly. BCP bilayers having triply periodic minimal surfaces with cubic lattice structures are formed. Here we report the synthesis and self-assembly of BCPs with T8 polyhedral oligomeric silsesquioxane (POSS), an inorganic cage molecule. POSS can be asymmetrically functionalized to host structural modules as branching units of the hydrophilic block that contain various spatial and chemical environments. BCPs, each containing seven poly(ethylene glycol) chains and the hydrophobic polystyrene block PEG350(7)-POSS-b-PS, were prepared to investigate the effect of the highly branched hydrophilic block architecture on self-assembly. We found that the BCPs self-assembled into polymer cubosomes. Regardless of the block ratio, only the primitive cubic phase (Schwarz P surface, Im3m space group) was observed in the cubosomes. This is in contrast to the self-assembly of conventional BCPs into inverse mesophases, in which the internal lattice preferentially transforms into double-diamond lattices to yield a Schwarz D surface as a consequence of block ratio changes. Our results suggest that BCP architecture may be related to the symmetry of the lattice formed via self-assembly in solution.
机译:嵌段共聚物(BCP)的基于溶液的自组装成纳米颗粒或微粒反相间中间蛋白酶或聚合物缔约置越来越感兴趣。这种现象可以产生具有三维组织的大型水通道的三维组织的介孔材料。除了其亲水和疏水块的比例,BCP的架构批判性地影响自组装。形成具有三晶格结构的三个星期性最小表面的BCP双层。在这里,我们报告了BCP的合成和自组装,具有T8多面体低聚倍半硅氧烷(POSS),无机笼分子。 POSS可以与宿主结构模块相比,作为包含各种空间和化学环境的亲水块的分支单元。 BCPS,每个包含七个聚(乙二醇)链和疏水性聚苯乙烯嵌段PEG350(7)-Poss-B-PS,以研究高度分支亲水块架构对自组装的影响。我们发现BCP自组装成聚合物缔约肌。无论嵌段率如何,在立方体中只观察到原始立方相(Schwarz P表面,IM3M空间组)。这与常规BCP的自组装成逆乳白酶相反,其中内部格子优先转化成双金刚石晶格,以产生由于块比变化而导致施瓦茨D表面。我们的结果表明,BCP架构可能与通过溶液中自组装形成的晶格的对称性有关。

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    《RSC Advances》 |2019年第44期|共6页
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  • 正文语种 eng
  • 中图分类 化学;
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