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Control over the Shell Thickness of Core/Shell Drops in Three-Phase Glass Capillary Devices

机译:三相玻璃毛细管装置中核/壳滴壳厚度的控制

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Monodisperse core/shell drops with aqueous core and poly(dimethylsiloxane) (PDMS) shell of controllable thickness have been produced using a glass microcapillary device that combines co-flow and flow-focusing geometries. The throughput of the droplet generation was high, with droplet generation frequency in the range from 1,000 to 10,000 Hz. The size of the droplets can be tuned by changing the flow rate of the continuous phase. The technique enables control over the shell thickness through adjusting the flow rate ratio of the middle to inner phase. As the flow rate of the middle and inner phase increases, the droplet breakup occurs in the dripping-to-jetting transition regime, with each double emulsion droplet containing two monodisperse internal aqueous droplets. The resultant drops can be used subsequently as templates for monodisperse polymer capsules with a single or multiple inner compartments, as well as functional vesicles such as liposomes, polymersomes and colloidosomes.
机译:使用结合了共流和流聚焦几何形状的玻璃微毛细管装置,可以生产具有可控厚度的水核和聚二甲基硅氧烷(PDMS)壳的单分散核/壳滴。液滴产生的生产量高,液滴产生频率在1,000至10,000Hz的范围内。液滴的大小可以通过改变连续相的流速来调节。该技术可通过调节中间相与内部相的流速比来控制壳的厚度。随着中间相和内部相的流速增加,液滴在滴落至喷射过渡过程中破裂,每个双乳液液滴均包含两个单分散内部水性液滴。所得的液滴可随后用作具有单个或多个内部隔室的单分散聚合物胶囊以及功能性囊泡如脂质体,聚合物囊泡和胶体囊的模板。

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