首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Membrane-Integrated Glass Capillary Device for Preparing Small-Sized Water-in-Oil-in-Water Emulsion Droplets
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Membrane-Integrated Glass Capillary Device for Preparing Small-Sized Water-in-Oil-in-Water Emulsion Droplets

机译:制备小尺寸油包水包水型乳液液滴的膜集成玻璃毛细管装置

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In this study, a membrane-integrated glass capillary device for preparing small-sized water-in-oil-in-water (W/O/W) emulsion droplets is demonstrated. The concept of integrating microfluidics to prepare precise structure-controlled double emulsion droplets with the membrane emulsification technique provides a simple method for preparing small-sized and structure-controlled double emulsion droplets. The most important feature of the integrated device is the ability to decrease droplet Size when the emulsion droplets generated at the capillary pass through the membrane. At the same time, most of the oil shell layer is stripped away and the resultant double emulsion droplets have thin Shell's. It is also demonstrated that the sizes of the resultant double emulsion droplets are greatly affected by both the double emulsion droplet flux through membranes and membrane pore size; when the flux is increased and membrane pore site is decreased, the generated W/O/W emulsion droplets are smaller than the original. In situ observation Of the permeation behavior of the W/O/W emulsion droplets through membranes using a high-speed camera demonstrates (1) the stripping of the middle oil phase, (2) the division of the double emulsion droplets to generate two or more droplets with smaller Size, and (3) the collapse of the double emulsion droplets. The first phenomenon results in a thinner oil shell, and the second division phenomenon produces double emulsion droplets that are smaller than the original.
机译:在这项研究中,展示了一种用于制备小尺寸水包油包水型(W / O / W)乳液液滴的膜集成玻璃毛细管装置。利用膜乳化技术将微流体集成以制备精确的结构可控的双乳剂液滴的概念为制备小尺寸和结构可控的双乳剂液滴提供了一种简单的方法。集成设备的最重要特征是当毛细管处产生的乳液液滴穿过膜时,减小液滴尺寸的能力。同时,大部分油壳层被剥离掉,所得的双乳剂液滴具有薄壳层。还证明了所得的双乳剂液滴的尺寸受双乳剂液滴通过膜的通量和膜孔径的大小影响很大。当通量增加而膜孔部位减少时,产生的W / O / W乳剂液滴将小于原始液滴。使用高速相机原位观察W / O / W乳状液小滴通过膜的渗透行为证明(1)中间油相的汽提,(2)双乳状液小滴的分裂产生两个或两个更多的液滴具有较小的尺寸,以及(3)双重乳液液滴的坍塌。第一种现象导致油壳更薄,第二种现象产生比原始液滴小的双乳剂液滴。

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