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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Microfluidic Production of Semipermeable Microcapsules by Polymerization-Induced Phase Separation
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Microfluidic Production of Semipermeable Microcapsules by Polymerization-Induced Phase Separation

机译:聚合诱导相分离法微流体制备半透性微胶囊

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摘要

Semipermeable microcapsules are appealing for controlled release of drugs, study of cell-to-cell communication, and isolation of enzymes or artificial catalysts. Here, we report a microfluidic strategy for creating monodisperse microcapsules with size-selective permeability using polymerization-induced phase separation. Monodisperse water-in-oil-in-water (W/O/W) double-emulsion drops, whose ultrathin middle layer is composed of photocurable resin and inert oil, are generated in a capillary microfluidic device, and irradiated by UV light. Upon UV illumination, the monomers are photopolymerized, which leads to phase separation between the polymerized resin and the oil within the ultrathin shell. Subsequent dissolution of the oil leaves behind regular pores in the polymerized membrane that interconnect the interior and exterior of the microcapsules, thereby providing size-selective permeability. The degree of phase separation can be further tuned by adjusting the fraction of oil in the shell or the affinity of the oil to the monomers, thereby enabling the control of the cutoff value of permeation. High mechanical stability and chemical resistance of the microcapsules, as well as controllable permeability and high encapsulation efficiency, will provide new opportunity in a wide range of applications.
机译:半透性微胶囊吸引了药物的控释,细胞间通讯研究以及酶或人工催化剂的分离。在这里,我们报告了一种微流控策略,可使用聚合诱导的相分离技术来创建具有尺寸选择性渗透性的单分散微胶囊。在毛细管微流控设备中产生单分散的水包油包水(W / O / W)双乳液滴剂,其超薄中间层由光固化树脂和惰性油组成,并通过紫外线照射。在紫外线照射下,单体发生光聚合,这导致聚合的树脂与超薄壳内的油之间发生相分离。随后油的溶解在聚合膜中留下规则的孔,这些孔将微囊的内部和外部相互连接,从而提供了大小选择的渗透性。可以通过调节壳中油的比例或油对单体的亲和力来进一步调节相分离的程度,从而可以控制渗透的截止值。微胶囊的高机械稳定性和耐化学性,以及可控的渗透性和高封装效率,将为广泛的应用提供新的机会。

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