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Mechanisms and control of single-step microfluidic generation of multi-core double emulsion droplets

机译:单步微流体产生多芯双乳液液滴的机制与控制

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Single-step generation of monodisperse multi-core double emulsion drops in three-phase glass capillary microfluidic device was investigated using a micro-particle image velocimetry (micro-PTV) system. Phase diagrams were developed to predict the number of encapsulated inner drops as a function of the capillary numbers of inner, middle and outer fluid. The maximum stable number of inner drops cores in uniform double emulsion drops was six. Starting from core/shell drops, the formation of double emulsion drops with multiple cores was achieved by decreasing the capillary number of the outer fluid and increasing the capillary number of the middle fluid. A stable continuous jet of the middle fluid loaded with inner drops was formed at high capillary numbers of the middle fluid. Empirical correlations predicting the size and generation frequency of inner drops as a function of the capillary numbers and the device geometry were developed. Dual-core double emulsion drops were used as templates for the fabrication of polymeric capsules using "on-the-fly" photopolymerisation. The capsule morphology was controlled by manipulating the stability of the inner drops through adjusting the concentration of the lipophilic surfactant in the middle fluid. At low concentration of the lipophilic surfactant, inner drops coalesced during curing and single compartment capsules with thin shells were produced from dual-core drops. The core/shell capsules produced from multi-core drops were monodispersed and larger than those produced from core/shell drops in the same device. (C) 2017 The Authors. Published by Elsevier B.V.
机译:使用微颗粒图像速度(Micro-PTV)系统研究了三相玻璃毛细管微流体装置中的单步式多芯双乳液的单步生成。开发相图以预测作为内部,中间和外部流体的毛细管数的封装内滴的数量。均匀双乳液下降中的最大稳定数量的内部滴芯是六个。从核心/壳珠开始,通过减少外部流体的毛细管数并增加中间流体的毛细数来实现具有多个核的双乳液滴的形成。在中间流体的高毛细管数上形成载有内滴的中间流体的稳定连续射流。开发了作为毛细数量和器件几何形状的函数的内部滴度的尺寸和发电频率的经验相关性。使用双芯双乳液滴作为模板,用于使用“逐次”的光聚合物制备聚合物胶囊。通过操纵内部液滴的稳定性来控制胶囊形态,通过调节中间流体中的亲脂性表面活性剂的浓度来控制。在亲脂性表面活性剂的低浓度下,从双芯下降产生固化过程中聚合并的内滴和具有薄壳的单室胶囊。由多芯滴产生的芯/壳胶囊单分散,大于同一装置中的芯/壳液滴产生的胶囊。 (c)2017作者。 elsevier b.v出版。

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