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Architecture of micron-scale hollow spheres composed of silica nanoparticles and approach to luminescent spheres

机译:由二氧化硅纳米粒子组成的微米级空心球的结构和发光球的方法

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Micron-scale hollow spheres were successfully constructed with silica nanoparticles by templating of polymer spheres. Subsequently, the use of 3-aminopropyltriethoxysilane (APTES) introduces carbon and oxygen defects in the silica nanoparticles resulting from calcination of the aminopropyl group. In this approach, the template of micron-scale polymer spheres was prepared from dispersion polymerization. Subsequent Stober process results in the formation of a silica layer attached to the polymer sphere surfaces. After calcination, the obtained micron-scale hollow silica spheres were then studied on the relationship between the particle diameter and the surface morphology. The luminescence of hollow spheres was prepared through using APTES in Stober process, and which of related the appearance of luminescence to the APTES concentration and calcination temperature. The results of this study can provide useful information for the structure of micron-scale hollow spheres and their application to luminescent materials.
机译:通过对聚合物球进行模板化,成功地用二氧化硅纳米粒子构建了微米级的空心球。随后,使用3-氨基丙基三乙氧基硅烷(APTES)在二氧化硅纳米粒子中由于氨基丙基的煅烧引入了碳和氧缺陷。用这种方法,由分散聚合制备了微米级聚合物球的模板。随后的斯托伯工艺导致附着在聚合物球体表面的二氧化硅层的形成。煅烧后,然后研究获得的微米级中空二氧化硅球的粒径与表面形态之间的关系。空心球的发光是通过在斯托伯法中使用APTES制备的,并且发光的外观与APTES浓度和煅烧温度有关。这项研究的结果可以为微米级空心球的结构及其在发光材料中的应用提供有用的信息。

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