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具有中空结构和纳米壳层的二氧化硅颗粒的分级结构的制备:一种用于提高紫外和可见光反射率的材料。

Preparation of hierarchical architectures of silica particles with hollow structure and nanoparticle shells: a material for the high reflectivity of UV and visible light.

机构信息

National Institute of Advanced Industrial Science and Technology, Kansai Center (Nanotechnology Research Institute), 1-8-31 Midorigaoka, Ikeda, Osaka 563-8577, Japan.

出版信息

Langmuir. 2010 May 4;26(9):6561-7. doi: 10.1021/la9043396.

Abstract

Silica microcapsules (silica hollow particles) are readily prepared by a single step of the interfacial reaction method, where a W/O/W emulsion is employed effectively. This is a simple (one-step process), inexpensive approach (silica source is sodium silicate) to producing hollow silicas. The addition of NaCl to the sodium silicate solution as the inner water phase of the W/O/W emulsion plainly influenced the shell structure of the silica hollow particles. The increase of the addition of NaCl expanded the size of the mesopores in their silica shell, which reached to macropores (>50 nm). The nanoparticles in the shells of some silica hollow particles attained approximately 200-400 nm in size, which is comparable to the wavelengths of UV and visible light. According to the diffuse reflection spectra of the silica hollow particles in powder form, these particles showed the high reflection of UV and visible light, which increased with added NaCl in the preparation process of the interfacial reaction method. The reflectance of a silica hollow particle from 300 to 800 nm in wavelength was over 90%, which was significantly higher than a common solid (not hollow) silica gel. In addition, even the reflectance of UV light shorter than 300 nm in wavelength was greater than 60%. These characteristic reflections in a wide range of wavelengths were caused by both nanoparticle shells whose sizes are comparable with the wavelength of light and the hollow structures of the main micrometer-sized particles.

摘要

硅微胶囊(硅空心颗粒)可通过界面反应方法的一步反应制备,其中有效地使用了 W/O/W 乳液。这是一种简单(一步法)、廉价(硅源为硅酸钠)的方法来生产空心硅。将 NaCl 添加到硅酸钠溶液中作为 W/O/W 乳液的内水相,明显影响了硅空心颗粒的壳结构。NaCl 添加量的增加扩大了其硅壳中的中孔(>50nm)的尺寸。一些硅空心颗粒壳中的纳米颗粒的尺寸达到了约 200-400nm,这与 UV 和可见光的波长相当。根据粉末形式的硅空心颗粒的漫反射光谱,这些颗粒表现出对 UV 和可见光的高反射,这在界面反应方法的制备过程中随着 NaCl 的添加而增加。波长在 300 到 800nm 之间的硅空心颗粒的反射率超过 90%,明显高于普通的实心(非空心)硅胶。此外,即使是波长小于 300nm 的紫外光的反射率也大于 60%。这些在宽波长范围内的特征反射是由与光的波长相当的纳米颗粒壳和主要微米级颗粒的空心结构共同引起的。

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