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Supramolecular hydrogel microcapsules via cucurbit8uril host–guest interactions with triggered and UV-controlled molecular permeability

机译:通过葫芦8尿嘧啶宿主-客体相互作用的超分子水凝胶微胶囊具有触发的和紫外线控制的分子渗透性

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摘要

Host–guest assembly in droplet-based microfluidics opens a new avenue for fabricating supramolecular hydrogel microcapsules with high monodispersity and controlled functionality. In this paper, we demonstrate a single emulsion microdroplet platform to prepare microcapsules with supramolecular hydrogel skins from host molecule cucurbit[8]uril and guest polymer anthracene-functionalized hydroxyethyl cellulose. In contrast to construction of microcapsules from a droplet-in-droplet double emulsion, here the electrostatic attraction between charged polymer and surfactant facilitates formation of defined supramolecular hydrogel skins in a single emulsion. Furthermore, by taking advantage of dynamic interactions and the tunable cross-linked supramolecular hydrogel network, it is possible to prepare microcapsules with triggered and UV-controlled molecular permeability. These could be potentially used in a delivery system for e.g. agrochemicals, nutraceuticals or cosmetics.
机译:基于液滴的微流体中的主客体组装为制造具有高单分散性和受控功能的超分子水凝胶微胶囊开辟了一条新途径。在本文中,我们展示了一个单一的乳液微滴平台,可从宿主分子葫芦[8] uril和客体聚合物蒽官能化的羟乙基纤维素制备具有超分子水凝胶皮肤的微胶囊。与由液滴中的液滴双重乳液构造微胶囊相反,在此带电荷的聚合物和表面活性剂之间的静电吸引促进了在单一乳液中形成限定的超分子水凝胶皮肤。此外,通过利用动态相互作用和可调谐的交联超分子水凝胶网络,可以制备具有触发的和紫外线控制的分子渗透性的微胶囊。这些可以潜在地用在例如农用化学品,营养食品或化妆品。

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