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首页> 外文期刊>ACS nano >Hollow Superparamagnetic Microballoons from Lifelike, Self-Directed Pickering Emulsions Based on Patchy Nanoparticles
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Hollow Superparamagnetic Microballoons from Lifelike, Self-Directed Pickering Emulsions Based on Patchy Nanoparticles

机译:栩栩如生,基于斑点纳米粒子的自控Pickering乳液的空心超顺磁微气球

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摘要

Herein, the formation of hollow microballoons derived from superparamagnetic iron oxide nanoparticles with silica patches is reported. Depending on the experimental conditions, single- or multishelled superparamagnetic microballoons as well as multivesicular structures were obtained. We show how such structural changes follow a lifelike process that is based on self directing Pickering emulsions. We further demonstrate that the key toward the formation of such complex architectures is the patchy nature of the nanoparticles. Interestingly, no well-defined ordering of patches on the particles surface is required, unlike what theorists formerly predicted. The resultant hollow microballoons may be turned into hollow carbonaceous magnetic microspheres by simple pyrolysis. This opens the way to additional potential applications for such ultralightweight (density: 0.16 g.cm(-3)) materials.
机译:在本文中,报道了衍生自具有二氧化硅补丁的超顺磁性氧化铁纳米粒子的空心微气球的形成。根据实验条件,获得了单壳或多壳超顺磁性微气球以及多囊泡结构。我们展示了这种结构变化如何遵循基于自指导Pickering乳液的逼真的过程。我们进一步证明,形成这种复杂体系结构的关键是纳米颗粒的斑驳性质。有趣的是,与理论家先前预测的不同,不需要在粒子表面上明确定义补丁的顺序。可以通过简单的热解将所得的中空微球变成中空的碳质磁性微球。这为此类超轻(密度:0.16 g.cm(-3))材料的其他潜在应用开辟了道路。

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