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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Complex Emulsions by Extracting Water from Homogeneous Solutions Comprised of Aqueous Three-Phase Systems
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Complex Emulsions by Extracting Water from Homogeneous Solutions Comprised of Aqueous Three-Phase Systems

机译:通过从三相体系中的均相溶液中提取水来萃取乳液

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Multiple emulsions can be obtained by binary and ternary liquid phase separation. And the use of the aqueous two-phase system provides a simple route to prepare water-in-water-in-oil (W/W/O) or water-in-water-in-water (W/W/W) multiple emulsions. It is thus expected that we can fabricate more complex emulsions by using an aqueous three-phase system. Herein, we present a simple and versatile method to generate complex emulsions based on phase separation in homogeneous droplets made up of aqueous three-phase system: poly(ethylene glycol) (PEG), poly(vinyl alcohol) (PVA) and dextran (DEX) through extracting water from droplets. We examine the formation process and the effect of mass ratio of each two components in the three phase system. Emulsion droplets with five types of morphologies, i.e., binary-core/shell, core/shell-single phase Janus, ellipsoid Janus, multicore-in-matrix and single core-double shell morphologies can be formed, depending on the mass ratio of each two components and modification of PEG with Fe3O4 nanoparticles. We observe transition of core/shell-single phase Janus to binary-core/shell and single core-double shell to core/shell-single phase Janus geometry with prolongation of extracting time, and obtain the geometry map for the formation of different shaped droplets. Due to different affinities of PEG, PVA and DEX to certain materials, we functionalize each compartment in the complex emulsion droplets, and apply the resulting droplet for glucose sensing and the construction of antibody-mediated targeting drug delivery. This emulsion generation method is simple and the choice for the component of the aqueous three-phase system is broad, which can be further extended to generate complex emulsions from aqueous multiphase systems.
机译:多种乳液可以通过二元和三元液相分离获得。水性两相系统的使用提供了一种简单的途径来制备水包内(w / w / o)或水包水 - 水 - 水 - 水 - 水乳液。因此,预期通过使用三相系统可以制造更复杂的乳液。在此,我们提出了一种简单而通用的方法,基于由三相系统的均匀液滴中的相分离产生复杂乳液:聚(乙二醇)(PEG),聚(乙烯醇)(PVA)和葡聚糖(DEX )通过从液滴中提取水。我们检查了三相系统中每两个组分的形成过程和质量比的影响。可以形成具有五种类型的形态,即二进制核/壳,核心/壳单相和单相和单核和单核 - 双壳形态的乳液液滴,取决于每个的质量比,可以形成椭圆形janus,核心/单相和单相和单核 - 双壳形态。用Fe3O4纳米颗粒的两种组分和修饰。我们观察核心/壳牌单阶段Janus的转换为二进制核/壳和单芯 - 双壳,以延长提取时间的核心/壳 - 单相janus几何形​​状,并获得用于形成不同形状的液滴的几何图。由于PEG,PVA和DEX对某些材料的不同,我们在复杂的乳液液滴中的每个隔室中官能化,并施加所得液滴以进行葡萄糖感测和构建抗体介导的靶向药物递送。该乳液产生方法简单,并且含水三相系统的组分的选择是宽的,这可以进一步延伸以产生来自含水多相体系的复杂乳液。

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