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Silica core-polystyrene shell nanoparticle synthesis and assembly in three dimensions

机译:硅core-polystyrene壳纳米颗粒在三维空间中合成和组装

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摘要

Monodisperse silica nanoparticles (SiNPs) grafted with well-defined and highly dense polystyrene brushes are used as building blocks for the formation of three-dimensional (3D) colloidal crystals. By adjusting the refractive indices and the density of the hybrid particles with those of mixed solvents, iridescent microcrystals were formed throughout the entire suspension which were characterised by confocal laser microscopy. These core-shell hybrid particles are not charged and the driving force of the crystallization relies on repulsive forces between the polymer brushes with high grafting density. The interparticle distance is correlated to Bragg's Law and can be controlled by manipulating the grafting density and the length of the polymer brushes. Finally, the uniformity of these unique core-shell particles was exploited to generate 3D assemblies by a rapid and simple process based on centrifugation.
机译:单分散的二氧化硅纳米粒子(SiNPs)嫁接明确的和高度密集的聚苯乙烯刷子被用作构建块三维(3 d)胶体的形成晶体。的密度与混合粒子混合溶剂、彩虹色的微晶核形成在整个悬架被激光共聚焦显微镜的特征。这些核壳混合粒子不起诉和结晶的驱动力依赖于聚合物之间的排斥力刷高接枝密度。颗粒间的距离是布拉格的相关法律和可以通过操作控制接枝密度和长度的聚合物刷子。核壳粒子是利用生成3 d基于组件由一个快速和简单的过程离心分离。

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