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流动聚焦玻璃毛细管微流控装置中有效胶体乳液液滴调控 收集管变化

Effective colloidal emulsion droplet regulation in flow-focusing glass capillary microfluidic device collection tube variation.

作者信息

Jiang Tianyi, Wu Hao, Liu Shuofu, Yan Hui, Jiang Hongyuan

机构信息

School of Mechatronics Engineering, Harbin Institute of Technology West Da-Zhi Street 92 Harbin Heilongjiang PR China 150001

Department of Mechanical Engineering, City University of Hong Kong Kowloon Hong Kong SAR PR China 999077.

出版信息

RSC Adv. 2024 Jan 19;14(5):3250-3260. doi: 10.1039/d3ra08561a. eCollection 2024 Jan 17.

Abstract

Colloidal emulsion droplets, created using glass capillary microfluidic devices, have been found in a myriad of applications, serving as subtle microcarriers, delicate templates, To meet the objective requirements under varying circumstances, it is crucial to efficiently control the morphology and dimensions of the droplets on demand. The glass capillary collection tube is a crucial component of the flow-focusing microfluidic system due to its close association with the geometrical confinement of the multiphasic flow. However, there are currently no guidelines for the design of the morphology and dimensions of the glass capillary collection tube, which shall result in a delay in assessing serviceability until after the microfluidic device is prepared, thereby causing a loss of time and effort. Herein, an experimental study was conducted to investigate the effect of the geometrical characteristics of glass capillary collection tubes on the production of colloidal emulsion droplets. After characterizing the generated colloidal emulsion droplets, it was found that the geometrical variations of the glass capillary collection tube resulted in numerical disparities of droplets due to different degrees of flow-focusing effects. The stronger flow-focusing effect produced smaller droplets at a higher frequency, and the dimensional variation of colloidal emulsion droplets was more responsive to varying flow rates. Furthermore, the transformation from colloidal single-core double-emulsion droplets to multi-core double-emulsion droplets also changed with the flow rate due to the glass capillary collection tube morphology-determined varying flow-focusing effect. These experimental findings can offer qualitative guidance for the design of glass capillary microfluidic devices in the preliminary stage, thus facilitating the smooth production of desired colloidal emulsion droplets.

摘要

利用玻璃毛细管微流控装置生成的胶体乳液微滴已在众多应用中得到应用,可作为精细的微载体、精巧的模板。为满足不同情况下的客观要求,按需高效控制微滴的形态和尺寸至关重要。玻璃毛细管收集管是流动聚焦微流控系统的关键部件,因为它与多相流的几何限制密切相关。然而,目前尚无关于玻璃毛细管收集管形态和尺寸设计的指导原则,这会导致在微流控装置制备完成后才能评估其适用性,从而造成时间和精力的浪费。在此,进行了一项实验研究,以探究玻璃毛细管收集管的几何特性对胶体乳液微滴生成的影响。在对生成的胶体乳液微滴进行表征后发现,玻璃毛细管收集管的几何变化由于流动聚焦效应程度不同导致微滴数量存在差异。更强的流动聚焦效应会以更高频率产生更小的微滴,且胶体乳液微滴的尺寸变化对流速变化更为敏感。此外,由于玻璃毛细管收集管形态决定的流动聚焦效应变化,胶体单核双乳液微滴向多核双乳液微滴的转变也随流速而变化。这些实验结果可为玻璃毛细管微流控装置的初步设计提供定性指导,从而有助于顺利生成所需的胶体乳液微滴。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a8e/10797494/a43eff659f72/d3ra08561a-f1.jpg

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