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Microfluidic droplet facilitated hierarchical assembly for dual cargo loading and synergistic delivery

机译:微流体液滴有助于分层组装,实现双重货物装载和协同运输

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摘要

Bottom-up hierarchical assembly has emerged as an elaborate and energy-efficient strategy for the fabrication of smart materials. Herein, we present a hierarchical assembly process, whereby linear amphiphilic block copolymers are self-assembled into micelles, which in turn are accommodated at the interface of microfluidic droplets via cucurbit[8]uril-mediated host-guest chemistry to form supramolecular microcapsules. The monodisperse microcapsules can be used for simultaneous carriage of both organic (Nile Red) and aqueous-soluble (fluorescein isothiocyanate-dextran) cargo. Furthermore, the well-defined compartmentalized structure benefits from the dynamic nature of the supramolecular interaction and offers synergistic delivery of cargos with triggered release or through photocontrolled porosity. This demonstration of premeditated hierarchical assembly, where interactions from the molecular to microscale are designed, illustrates the power of this route toward accessing the next generation of functional materials and encapsulation strategies.
机译:自下而上的分层装配已成为一种用于制造智能材料的精细而节能的策略。在这里,我们提出了一个分层的组装过程,其中线性两亲嵌段共聚物被自组装成胶束,然后通过葫芦[8]尿嘧啶介导的主客体化学反应被容纳在微流体液滴的界面上,形成超分子微胶囊。单分散微胶囊可用于同时运输有机(尼罗红)和水溶性(荧光素异硫氰酸酯-葡聚糖)货物。此外,界限分明的结构得益于超分子相互作用的动态特性,可通过触发释放或通过光控孔隙率协同运送货物。预先设计的分级组装的演示(其中设计了从分子到微观尺度的相互作用)说明了该途径对获取下一代功能材料和封装策略的强大作用。

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