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Grassy Silica Nanoribbons and Strong Blue Luminescence

机译:草绿色二氧化硅纳米带和强蓝色发光

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摘要

Silicon dioxide (SiO2) is one of the key materials in many modern technological applications such as in metal oxide semiconductor transistors, photovoltaic solar cells, pollution removal, and biomedicine. We report the accidental discovery of free-standing grassy silica nanoribbons directly grown on SiO2/Si platform which is commonly used for field-effect transistors fabrication without other precursor. We investigate the formation mechanism of this novel silica nanostructure that has not been previously documented. The silica nanoribbons are flexible and can be manipulated by electron-beam. The silica nanoribbons exhibit strong blue emission at about 467 nm, together with UV and red emissions as investigated by cathodoluminescence technique. The origins of the luminescence are attributed to various defects in the silica nanoribbons; and the intensity change of the blue emission and green emission at about 550 nm is discussed in the frame of the defect density. Our study may lead to rational design of the new silica-based materials for a wide range of applications.
机译:二氧化硅(SiO2)是许多现代技术应用中的关键材料之一,例如在金属氧化物半导体晶体管,光伏太阳能电池,污染消除和生物医学中。我们报告了偶然发现的直接在SiO2 / Si平台上生长的自立式草状二氧化硅纳米带的发现,该纳米带通常用于制造场效应晶体管而没有其他前驱物。我们调查了这种新型的二氧化硅纳米结构的形成机理,以前没有文献记载。二氧化硅纳米带具有柔韧性,可以通过电子束操纵。通过阴极发光技术研究,二氧化硅纳米带在约467 strongnm处表现出强烈的蓝色发射,并具有紫外线和红色发射。发光的起源归因于二氧化硅纳米带中的各种缺陷。在缺陷密度的框架内讨论了550 nm左右的蓝光和绿光的强度变化。我们的研究可能会导致合理设计新的二氧化硅基材料,使其具有广泛的应用范围。

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