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Supramolecular Assembly of End-Functionalized Polymer Mixtures Confined in Nanospheres

机译:限制在纳米球中的最终功能化聚合物混合物的超分子组装

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Supramolecular assembly of functionalized polymers, capable of forming block copolymer-like molecular clusters, has emerged as a promising alternative for creating nanoscopically ordered structures. Here, we demonstrate that nanospheres, which have intriguing internal nanodomains and controllable surface functionality, can be fabricated by supramolecular assembly of two complementarily end-interacting species of mono-end-functionalized polymers using the self-organized precipitation (SORP) method. An exotic internal morphology, hierarchically organized structure of perforated spherical layers, was formed inside the nanosphere prepared from the stoichiometric mixture of the end-functionalized polymers, which is due to the formation of diblock-like supramolecules and their packing frustration in the spherically confined nanospace. When the mixing ratio of the two end-functionalized polymers differs from the stoichiometric ratio, the nanoparticle surface is enriched with an excess of unpaired functionalized groups, which therefore provides us with a useful way to precisely control the surface functionality of the nanoparticles.
机译:能够形成嵌段共聚物样分子簇的功能化聚合物的超分子组装已经成为创建纳米级有序结构的有前途的选择。在这里,我们证明了具有吸引人的内部纳米域和可控制的表面功能的纳米球可以通过使用自组织沉淀(SORP)方法将两个互补的末端相互作用的单端官能化聚合物物种进行超分子组装来制造。由末端官能化聚合物的化学计量混合物制备的纳米球内部形成了一种奇特的内部形态,多孔球形层的分层组织结构,这是由于二嵌段状超分子的形成以及它们在球形受限纳米空间中的堆积而造成的。当两种末端官能化聚合物的混合比不同于化学计量比时,纳米颗粒表面富含过量的未配对官能化基团,因此为我们提供了一种精确控制纳米颗粒表面官能度的有用方法。

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