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Size-controlled synthesis of polymer hollow nanoparticles using emulsion templates prepared by tandem acoustic emulsification

机译:使用串联声乳化制备的乳液模板的高分控制合成聚合物中空纳米粒子

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We have developed a new emulsion template method for the synthesis of poly(methylmethacrylate) (PMMA) hollow nanoparticles with different sizes. This synthetic method involves sequential ultrasonic irradiation (20 kHz -> 500 kHz -> 1.6 MHz -> 2.4 MHz -> 5.0 MHz) for acoustic emulsification of a water-insoluble fluorous solvent such as perfluoromethylcyclohexane (PFMCH) in an aqueous medium, followed by monomer (methylmethacrylate (MMA)) adsorption on the surface of the PFMCH emulsion droplets and photopolymerization of the adsorbed MMA in the obtained emulsion solution. Since the size of the PFMCH droplet templates can be tuned according to the number of steps of tandem acoustic emulsification, the obtained PMMA particle size can also be controlled. The subsequent removal of the core fluorous solvent by the heat treatment yielded size-controlled PMMA hollow nanoparticles and monodisperse PMMA hollow nanoparticles of different sizes. Furthermore, we confirmed that the substances could go in or go out of the hollow particles through the shells. Such a nice permeability is important for applications such as nanoreactors and drug delivery systems.
机译:我们开发了一种新的乳液模板,用于合成具有不同尺寸的聚(甲基丙烯酸甲酯)(PMMA)中空纳米颗粒的合成。该合成方法涉及顺序超声辐射(20kHz - > 500kHz - > 1.6MHz - > 2.4MHz - > 5.0MHz),用于在水性介质中的水不溶性流溶剂如水不溶性流溶剂(PFMCH)中的声学乳化,然后进行在得到的乳液溶液中,单体(甲基丙烯酸甲酯(MMA))对PFMCH乳液液滴表面的吸附和吸附的MMA的光聚合。由于可以根据串联声学乳化的步骤数来调谐PFMCH液滴模板的尺寸,因此也可以控制所获得的PMMA粒度。随后通过热处理除去核心流溶剂,得到尺寸控制的PMMA中空纳米颗粒和单分散PMMA中空纳米颗粒的不同尺寸。此外,我们证实了物质可以通过壳进入或远离空心颗粒。这种良好的渗透性对于纳米反应器和药物递送系统等应用非常重要。

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