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首页> 外文期刊>Angewandte Chemie >Synthesis of Monodisperse Bi-Compartmentalized Amphiphilic Janus Microparticles for Tailored Assembly at the Oil-Water Interface
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Synthesis of Monodisperse Bi-Compartmentalized Amphiphilic Janus Microparticles for Tailored Assembly at the Oil-Water Interface

机译:单分散双间隔两亲Janus微粒的合成,用于油水界面的定制组装。

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摘要

Janus particles endowed with controlled anisotropies represent promising building blocks and assembly materials because of their asymmetric functionalities. Herein, we show that using the seeded monomer swelling and polymerization technique allows us to obtain bi-compartmentalized Janus microparticles that are generated depending on the phase miscibility of the poly (alkyl acrylate) chains against the polystyrene seed, thus minimizing the interfacial free energy. When tetradecyl acrylate is used, complete compartmentalization into two distinct bulbs can be achieved, while tuning the relative dimension ratio of compartmented bulb against the whole particle. Finally, we have demonstrated that selectively patching the silica nanoparticles onto one of the bulb surfaces gives amphiphilicity to the particles that can assemble at the oil-water interface with a designated level of adhesion, thus leading to development of a highly stable Pickering emulsion system.
机译:由于其不对称功能,具有受控各向异性的Janus粒子代表了有前途的构建基块和组装材料。在这里,我们表明,使用种子单体溶胀和聚合技术可以使我们获得双隔室的Janus微粒,该微粒取决于聚(丙烯酸烷基酯)链与聚苯乙烯种子的相溶性而产生,从而使界面自由能最小化。当使用丙烯酸十四烷基酯时,可以实现完全分隔成两个不同的球体,同时调节分隔的球体相对于整个颗粒的相对尺寸比。最终,我们证明了选择性地将二氧化硅纳米粒子修补到一个球状表面上可以使其两亲性,使其可以在油-水界面处聚集并具有指定的附着力,从而开发出高度稳定的Pickering乳液系统。

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