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具有 pH 响应表面活性剂性质的形状变化和两亲性反转的 Janus 粒子。

Shape-changing and amphiphilicity-reversing Janus particles with pH-responsive surfactant properties.

机构信息

Department of Chemical and Biomolecular Engineering, University of Pennsylvania , Philadelphia, Pennsylvania 19104, United States.

出版信息

J Am Chem Soc. 2014 Jul 16;136(28):9999-10006. doi: 10.1021/ja503189r. Epub 2014 Jul 1.

Abstract

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.

摘要

Janus 粒子是具有两面不同化学性质和润湿性的双相胶体。由于其两亲性,Janus 粒子为稳定多相流体混合物(如乳液)提供了独特的机会。我们的工作受到一类分子两亲性物质的启发,这些物质的表面活性剂性质可以响应环境刺激而发生变化。根据环境条件,这些刺激响应性分子两亲体能够组装成不同的结构,生成具有不同形态的乳液,并诱导相转变乳化。我们提出了一种新的合成方法,利用聚合诱导相分离和种乳液聚合的结合,能够大规模合成对 pH 响应的高度均匀的 Janus 粒子,这些 Janus 粒子能够完全响应溶液 pH 反转其表面活性剂性质。这些 Janus 粒子的一侧富含疏水性单体苯乙烯,而另一侧富含 pH 敏感的亲水性重复单元丙烯酸。这些 Janus 粒子改变其聚集/分散行为,并在响应 pH 变化时转变成不同的形状。此外,我们证明这些 Janus 粒子可以稳定不同类型的乳液(油包水和水包油),更重要的是,能够响应溶液 pH 变化诱导乳液的相转变。这些 Janus 粒子的 pH 响应聚集/分散行为还允许我们在不引起失稳的情况下调整油包水乳液液滴之间的相互作用;也就是说,通过改变水相的 pH 值,可以生成具有吸引力或排斥力的乳液液滴。我们的研究提出了一类新的胶体材料,将进一步拓宽 Janus 粒子作为动态可调固体质子表面活性剂的功能和性质。

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