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首页> 外文期刊>Journal of Materials Science >Synthesis of mesoporous silicon directly from silicalite-1 single crystals and its response to thermal diffusion of ZnO clusters
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Synthesis of mesoporous silicon directly from silicalite-1 single crystals and its response to thermal diffusion of ZnO clusters

机译:直接从silicalite-1单晶合成介孔硅及其对ZnO团簇热扩散的响应

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This article describes the preparation of mesoporous silicon granules with a layered structure directly from silicalite-1 single crystals. The silicalite-1 single crystals were thermally reduced in vacuum at 630 °C, with the original shape retained. The samples are confirmed as crystalline silicon by X-ray diffraction and transmission electron microscope. The silicon granule is composed of a monocrystalline surface and polycrystalline layered interior. A surface area of around 66 m2 g−1 and the pore size centered at 3.7 nm were obtained from nitrogen porosimetry, BET and BJH analysis. The ZnO clusters have been loaded into the porous silicon granule by thermal diffusion method. The photoluminescence emission centered at 3.44 eV originates from the small particles of ZnO and the band at 2.81 eV may be due to both an oxidized surface and quantum confinement effects. The microstructure in this silicon granule is very different from those in etched samples. The synthetic design demonstrates an interesting way from the microporous zeolite to mesoporous silicon and enlarges the structural diversity of porous silicon crystal.
机译:本文介绍了直接由silicalite-1单晶制备具有层状结构的介孔硅颗粒的方法。在630°C的真空下将silicalite-1单晶热还原,并保留原始形状。通过X射线衍射和透射电子显微镜确认样品为结晶硅。硅颗粒由单晶表面和多层晶体内部组成。通过氮气孔隙率法,BET和BJH分析获得了约66 m 2 g -1 的表面积和孔径为3.7 nm的孔。 ZnO团簇已经通过热扩散法加载到多孔硅颗粒中。以3.44 eV为中心的光致发光发射源于ZnO的小颗粒,而在2.81 eV处的能带可能是由于氧化表面和量子限制效应所致。该硅颗粒中的微结构与蚀刻样品中的微结构有很大不同。合成设计展示了一种从微孔沸石到中孔硅的有趣方法,并扩大了多孔硅晶体的结构多样性。

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