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Electrostatically Directed Self-Assembly of Ultrathin Supramolecular Polymer Microcapsules

机译:超薄超分子聚合物微胶囊的静电定向自组装

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摘要

Supramolecular self-assembly offers routes to challenging architectures on the molecular and macroscopic scale. Coupled with microfluidics it has been used to make microcapsules—where a 2D sheet is shaped in 3D, encapsulating the volume within. In this paper, a versatile methodology to direct the accumulation of capsule-forming components to the droplet interface using electrostatic interactions is described. In this approach, charged copolymers are selectively partitioned to the microdroplet interface by a complementary charged surfactant for subsequent supramolecular cross-linking via cucurbit[8]uril. This dynamic assembly process is employed to selectively form both hollow, ultrathin microcapsules and solid microparticles from a single solution. The ability to dictate the distribution of a mixture of charged copolymers within the microdroplet, as demonstrated by the single-step fabrication of distinct core–shell microcapsules, gives access to a new generation of innovative self-assembled constructs.
机译:超分子自组装为分子和宏观尺度上的具有挑战性的结构提供了途径。与微流控技术结合使用,它已被用于制造微胶囊,其中2D薄板以3D形状成型,将其中的体积封装起来。在本文中,描述了一种通用方法,该方法利用静电相互作用将胶囊形成成分的积累引导至液滴界面。在这种方法中,带电荷的共聚物通过互补的带电荷表面活性剂选择性地分配到微滴界面上,随后通过葫芦[8] uril超分子交联。该动态组装过程用于从单一溶液中选择性地形成中空,超薄微胶囊和固体微粒。指示带电共聚物混合物在微滴中的分布的能力,如独特的核-壳微胶囊的一步制备所表明的那样,使人们能够获得新一代创新的自组装结构。

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