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Formation of core-shell droplets for the encapsulation of liquid contents

机译:形成核心壳液滴,用于封装液体内容物

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摘要

Accurate control of monodisperse core-shell droplets generated in a microfluidic device has a broad range of applications in research and industry. This paper reports the experimental investigation of flow-focusing microfluidic devices capable of producing size-tuneable and monodisperse core-shell droplets. The dimension of the core-shell droplets was controlled passively by the channel geometry and the flow rate of the liquid phases. The results indicate that microchannel geometry is more significant than flow rates. The highly controllable core-shell droplets could be subsequently employed as a template for generating core-shell microparticles with liquid core. Optical, electron scanning microscopy and X-ray computed microtomography showed that the geometry of the core-shell droplets remains unchanged after solidification, drying and collection. The present study also looks at the thermal stability of core-shell particles depending on the particle size. The larger core-shell particles with a thicker shell provide a higher resistance to heating at elevated temperature. The high degree of control with a flow-focusing microfluidic device makes this a promising approach for the encapsulation, storage, and delivery of lipophilic contents.
机译:在微流体装置中产生的单分散芯壳液滴的精确控制具有广泛的研究和工业应用。本文报道了一种能够产生尺寸可调和单分散芯壳液滴的流动聚焦微流体装置的实验研究。通过沟道几何形状和液相的流速被动地控制核心壳液滴的尺寸。结果表明,微通道几何形状比流速更大。随后可以使用高可控的芯壳液滴作为用于产生具有液体芯的核心壳微粒的模板。光学,电子扫描显微镜和X射线计算的微观图显示,凝固,干燥和收集后芯壳液滴的几何形状保持不变。本研究还根据粒径看核壳颗粒的热稳定性。具有较厚壳的较大的芯壳颗粒在升高的温度下提供更高的加热抗性。具有流动聚焦的微流体装置的高度控制使得这种封装,储存和递送亲脂性含量的有希望的方法。

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