Sun Jianhua, Wei Wei, Zhao Donghua, Hu Qiong, Liu Xiaoya
Key Laboratory of Food Colloids and Biotechnology, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi 214122, China.
Soft Matter. 2015 Mar 14;11(10):1954-61. doi: 10.1039/c4sm02832e.
In this study, we report the assembly of amphiphilic polymeric micelles at the liquid/air interface to prepare liquid marbles for the first time. The polymeric micelles were synthesized from the self-assembly of a fluoropolymer, poly(styrene-co-acrylic acid-co-2,2,3,4,4,4-hexafluorobutyl methacrylate), in a selective solvent. The particle size, morphology and chemical composition of the micelles were determined by dynamic light scattering (DLS), transmission electron microscopy, scanning electron microscopy and X-ray photoelectron spectroscopy. DLS and aqueous electrophoresis revealed the pH-responsiveness of the micelles in aqueous dispersion. Liquid marbles with water volumes varying from 10 μL to 1 mL were formed by rolling water droplets on the micelle powder bed. The increase in water volume led to the shape transition of the liquid marbles from quasi-spherical to a puddle-like shape because of gravity. Fluorescence microscopy was used to observe the morphology of the formed liquid marbles, which confirmed that the micelles were adsorbed at the interface of water and air. The effective surface tension of the liquid marbles decreased with the increasing concentration of NaOH, which was added to the interior water phase. This agreed with the results of droplet roller experiments: the mechanical integrity of the liquid marbles prepared from alkaline solution (pH 10) was relatively poorer than those prepared from acidic solution (pH 2). Moreover, these liquid marbles coated with micelles showed pH-responsiveness when transferred onto the surfaces of aqueous solutions with different pH values. The liquid marbles were relatively stable on the acidic solution, whereas they burst immediately on the alkaline solution with a pH of 10. In addition, apart from water, Gellan gum solution and glycerol could be also successfully encapsulated by the fluorinated micelles to form stable liquid marbles.
在本研究中,我们首次报道了在液/气界面组装两亲性聚合物胶束以制备液滴弹。聚合物胶束是由含氟聚合物聚(苯乙烯-丙烯酸-甲基丙烯酸2,2,3,4,4,4-六氟丁酯)在选择性溶剂中自组装合成的。通过动态光散射(DLS)、透射电子显微镜、扫描电子显微镜和X射线光电子能谱测定了胶束的粒径、形态和化学组成。DLS和水性电泳揭示了胶束在水分散体中的pH响应性。通过在胶束粉末床上滚动水滴形成了水体积从10 μL到1 mL不等的液滴弹。由于重力作用,水体积的增加导致液滴弹的形状从准球形转变为水坑状。使用荧光显微镜观察形成的液滴弹的形态,证实胶束吸附在水和空气的界面处。向内部水相中添加NaOH后,液滴弹的有效表面张力随NaOH浓度的增加而降低。这与液滴滚动实验的结果一致:由碱性溶液(pH 10)制备的液滴弹的机械完整性相对比由酸性溶液(pH 2)制备的液滴弹差。此外,这些涂有胶束的液滴弹转移到不同pH值的水溶液表面时表现出pH响应性。液滴弹在酸性溶液上相对稳定,而在pH为10的碱性溶液上会立即破裂。此外,除了水之外,结冷胶溶液和甘油也可以成功地被氟化胶束包裹形成稳定的液滴弹。