Rhodia Laboratoire du Futur, Unité mixte Rhodia-CNRS, Université Bordeaux I, Bordeaux, France.
Langmuir. 2011 Jul 19;27(14):9034-42. doi: 10.1021/la1037102. Epub 2010 Nov 17.
We show that the production and the geometrical shape of complex polymersomes can be predicted by varying the flow rates of a simple microdevice using an empirical law which predicts the droplet size. This device is constituted of fused silica capillaries associated with adjusted tubing sleeves and T-junctions. Studying the effect of several experimental parameters, double emulsions containing a controlled number of droplets were fabricated. First, this study examines the stability of a jet in a simple confined microfluidic system, probing the conditions required for droplets production. Then, multicompartmental polymersomes were formed, controlling flow velocities. In this work, poly(dimethylsiloxane)-graft-poly(ethylene oxide) (PDMS-g-PEO) and poly(butadiene)-block-poly(ethyleneoxide) (PBut-b-PEO) amphiphilic copolymers were used and dissolved in chloroform/cyclohexane mixture. The ratio of these two solvents was adjusted in order to stabilize the double emulsion formation. The aqueous suspension contained poly(vinyl alcohol) (PVA), limiting the coalescence of the droplets. This work constitutes major progress in the control of double emulsion formation in microfluidic devices and shows that complex structures can be obtained using such a process.
我们展示了通过改变使用经验定律预测液滴尺寸的简单微器件的流速,可以预测复杂聚合物囊泡的生产和几何形状。该器件由与调节的管套和 T 型接头相关联的熔融石英毛细管组成。研究了几个实验参数的影响,制备了含有受控数量液滴的双乳液。首先,这项研究考察了在简单的受限微流系统中的射流稳定性,探测了生产液滴所需的条件。然后,控制流速形成多隔聚合物囊泡。在这项工作中,使用了聚(二甲基硅氧烷)-接枝-聚(环氧乙烷)(PDMS-g-PEO)和聚(丁二烯)-嵌段-聚(环氧乙烷)(PBut-b-PEO)两亲性共聚物,并溶解在氯仿/环己烷混合物中。调整这两种溶剂的比例以稳定双乳液的形成。水悬浮液含有聚乙烯醇(PVA),限制了液滴的聚结。这项工作在微流控装置中控制双乳液形成方面取得了重大进展,并表明可以使用这种工艺获得复杂的结构。