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用于稳健生产多重乳液微滴的同心毛细管微流控装置。

Concentric Capillary Microfluidic Devices Designed for Robust Production of Multiple-Emulsion Droplets.

作者信息

Oh Yoonjin, Kim Shin-Hyun

机构信息

Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.

出版信息

Langmuir. 2024 Sep 10;40(36):19166-19175. doi: 10.1021/acs.langmuir.4c02316. Epub 2024 Aug 26.

Abstract

Multiple emulsions are used as templates for producing functional microcapsules due to their unique core-shell geometry. Employing glass capillary devices with coaxial channels has proven effective in creating uniform multiple-emulsion droplets. However, the use of partially miscible fluids, crucial for microcapsule production, often results in clogging and disrupts the stability of these devices. Here, we introduce innovative capillary microfluidic devices with concentric capillary channels, specifically designed to optimize the production of multiple-emulsion droplets while mitigating issues of precipitation and clogging. The key aspect of these devices is their configuration of two or three concentrically aligned capillaries, which form separate, coaxial microchannels for fluid injection. This unique alignment, achieved through rotational adjustments that leverage the natural off-center positioning of tapered capillaries, facilitates the simultaneous coaxial injection of various fluids into a droplet-forming junction, significantly reducing fluid contact before emulsification. The devices, featuring double and triple concentric capillary channels, consistently produce highly uniform double-, triple-, and quadruple-emulsion droplets with precisely controlled diameters and layer thicknesses. The minimal contact between fluids prior to emulsification in these devices broadens the usable range of fluid combinations, heralding new possibilities in microcapsule development for pharmaceutical and cosmetic applications.

摘要

由于其独特的核壳几何结构,多重乳液被用作制备功能性微胶囊的模板。使用具有同轴通道的玻璃毛细管装置已被证明能有效地产生均匀的多重乳液液滴。然而,对于微胶囊生产至关重要的部分互溶流体的使用,常常会导致堵塞并破坏这些装置的稳定性。在此,我们引入了具有同心毛细管通道的创新型毛细管微流控装置,其专门设计用于优化多重乳液液滴的生产,同时减轻沉淀和堵塞问题。这些装置的关键在于它们由两个或三个同心排列的毛细管构成,这些毛细管形成了用于流体注入的独立同轴微通道。这种独特的排列是通过旋转调整实现的,利用了锥形毛细管的自然偏心定位,便于将各种流体同时同轴注入液滴形成节点,显著减少乳化前的流体接触。这些具有双同心和三同心毛细管通道的装置,始终能产生高度均匀的双乳液、三乳液和四乳液液滴,其直径和层厚度得到精确控制。在这些装置中,乳化前流体之间的最小接触拓宽了流体组合的可用范围,为药物和化妆品应用的微胶囊开发带来了新的可能性。

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