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APS -APS March Meeting 2017 - Event - Designing active microcapsules to capture nanoparticles dispersed in fluid

机译:APS -APS March Meeting 2017-活动-设计活性微胶囊以捕获分散在流体中的纳米颗粒

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Tactfully utilizing the large volume change associated with the volume-phase transition of hydrogels enables design on new microscopic system and devices with biomimetic functions. We use mesoscale computational modeling to design an active microcapsule capable of selectively capturing nanoparticles which are dispersed throughout the solvent. The microcapsule is comprised of a rigid spherical shell with six perforated holes and a stimuli-sensitive gel, which is placed inside the spherical shell. Upon application of an external stimulus the gel swells, expanding through the perforated holes in the shell and making contact with the nearby solvent and nanoparticle mixture. When the external stimulus is removed the gel collapses and returns into the microcapsule interior, bringing in nanoparticles, from the outside, in the process. Functionalizing the microcapsule with a polymer brush prevents nanoparticles from randomly diffusing into the microcapsule which gives us the ability to precisely control the nanoparticle concentration within the microcapsule interior.
机译:巧妙地利用与水凝胶体积-相变相关的大体积变化,可以在具有仿生功能的新型微观系统和设备上进行设计。我们使用中尺度计算模型来设计活性微囊,该微囊能够选择性地捕获分散在整个溶剂中的纳米颗粒。该微胶囊由具有六个穿孔的刚性球形外壳和放置在球形外壳内部的刺激敏感凝胶组成。施加外部刺激后,凝胶溶胀,通过外壳上的穿孔膨胀,并与附近的溶剂和纳米颗粒混合物接触。当外部刺激被去除时,凝胶塌陷并返回到微囊内部,在此过程中从外部引入纳米颗粒。用聚合物刷对微胶囊进行功能化可防止纳米粒子随机扩散到微胶囊中,这使我们能够精确控制微胶囊内部的纳米粒子浓度。

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