Shape-Changing and Amphiphilicity-Reversing Janus Particles with pH-Responsive Surfactant Properties

化学 杰纳斯粒子 乳状液 化学工程 杰纳斯 两亲性 相位反转 肺表面活性物质 皮克林乳液 油滴 聚合 丙烯酸 双水相体系 单体 色散(光学) 乳液聚合 润湿 相(物质) 纳米技术 有机化学 共聚物 聚合物 材料科学 工程类 物理 光学 生物化学
作者
Fuquan Tu,Daeyeon Lee
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:136 (28): 9999-10006 被引量:328
标识
DOI:10.1021/ja503189r
摘要

Janus particles are biphasic colloids that have two sides with distinct chemistry and wettability. Because of their amphiphilicity, Janus particles present a unique opportunity for stabilizing multiphasic fluid mixtures such as emulsions. Our work is motivated by one class of molecular amphiphiles that change their surfactant properties in response to environmental stimuli. Depending on the environmental conditions, these stimuli-responsive molecular amphiphiles are able to assemble into different structures, generate emulsions with different morphologies, and also induce phase inversion emulsification. We present a new synthesis method utilizing a combination of polymerization-induced phase separation and seeded emulsion polymerization, which allows for the bulk synthesis of highly uniform pH-responsive Janus particles that are able to completely reverse their surfactant properties in response to solution pH. One side of these Janus particles is rich in a hydrophobic monomer, styrene, whereas the other side is rich in a pH-sensitive hydrophilic repeating unit, acrylic acid. These Janus particles change their aggregation/dispersion behavior and also transform into different shapes in response to pH changes. Furthermore, we demonstrate that these Janus particles can stabilize different types of emulsions (oil-in-water and water-in-oil) and, more importantly, induce phase inversion of emulsions in response to changes in solution pH. The pH-responsive aggregation/dispersion behavior of these Janus particles also allows us to tune the interactions between oil-in-water emulsion droplets without inducing destabilization; that is, emulsion drops with attractive or repulsive interactions can be generated by changing the pH of the aqueous phase. Our study presents a new class of colloidal materials that will further widen the functionality and properties of Janus particles as dynamically tunable solid surfactants.
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