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Sequence of Polyurethane Ionomers Determinative for Core Structure of Surfactant–Copolymer Complexes

机译:聚氨酯离聚物的序列确定表面活性剂共聚物复合物的核心结构

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摘要

The core of micelles self-assembled from amphiphiles is hydrophobic and contains little water, whereas complex coacervate core micelles co-assembled from oppositely charged hydrophilic polymers have a hydrophilic core with a high water content. Co-assembly of ionic surfactants with ionic-neutral copolymers yields surfactant–copolymer complexes known to be capable of solubilizing both hydrophilic and hydrophobic cargo within the mixed core composed of a coacervate phase with polyelectrolyte-decorated surfactant micelles. Here we formed such complexes from asymmetric (PUI-A2) and symmetric (PUI-S2), sequence-controlled polyurethane ionomers and poly(N-methyl-2-vinylpyridinium iodide)29-b-poly(ethylene oxide)204 copolymers. The complexes with PUI-S2 were 1.3-fold larger in mass and 1.8-fold larger in radius of gyration than the PUI-A2 complexes. Small-angle X-ray scattering revealed differences in the packing of the similarly sized PUI micelles within the core of the complexes. The PUI-A2 micelles were arranged in a more ordered fashion and were spaced further apart from each other (10 nm vs. 6 nm) than the PUI-S2 micelles. Hence, this work shows that the monomer sequence of amphiphiles can be varied to alter the internal structure of surfactant–copolymer complexes. Since the structure of the micellar core may affect both the cargo loading and release, our findings suggest that these properties may be tuned through control of the monomer sequence of the micellar constituents.
机译:从两亲物自组装的胶束的芯是疏水的,含有一点水,而从相对的电荷的亲水聚合物共组装的复合凝聚核心胶束具有高水含量的亲水芯。具有离子中性共聚物的离子表面活性剂的共组装产生表面活性剂 - 共聚物复合物,其能够在与聚电解质装饰的表面活性剂胶束组成的混合芯中能够将亲水和疏水性货物溶解。在这里,我们形成了来自不对称(PUI-A2)和对称(PUI-S2),序列控制的聚氨酯离聚物和聚(N-甲基-2-乙烯基吡啶碘化物)29-B-聚(环氧乙烷)204共聚物的这种复合物。 PUI-S2的配合物质量越大,较大的质量越大,循环较大比普华-A2络合物较大1.8倍。小角度X射线散射揭示了在复合物的核心内类似尺寸的PUI胶束包装的差异。 PUI-A2胶束以更有序的方式排列,并且彼此进一步(10nm与6nm)间隔开,而不是pui-s2胶束。因此,该工作表明,可以改变两亲物的单体序列以改变表面活性剂共聚物复合物的内部结构。由于胶束核心的结构可能影响货物加载和释放,因此我们的研究结果表明这些性质可以通过控制胶束成分的单体序列来调节。

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