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Preparation and growth mechanism of clustered one-dimensional SiOx amorphous nanowires by catalytic pyrolysis of a polymer precursor

机译:聚合物前驱体催化热解制备一维SiOx无定形纳米线团簇及其生长机理

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摘要

Large-scale synthesis of clustered one-dimensional amorphous silica nanowires was achieved by simple thermal pyrolysis of an amorphous preceramic powder from perhydropolysilazane on alumina wafers coated with catalyst FeCl2. Scanning electron microscopy and transmission electron microscopy observations showed that the silica nanowires had smooth surface, and lengths of hundreds of micrometers and diameters in the range of 30-40 nm. Energy dispersive X-ray spectroscopy revealed that these nanowires consisted of Si and O elements in an atomic ratio of approximately 1:2, consistent with the stoichiometric formula SiO2. The two amorphous bulges in Raman spectrum at the centers of around 260 cm(-1) and 800 cm(-1) were identified to be those of amorphous silica. The growth mechanism of the as-produced silica nanowires could be attributed to vapor-liquid-solid mechanism. These results provide an alternative and simple preparation procedure for nanostructures with controlled morphology, and it will be helpful to understand the growth mechanism of one-dimensional SiO2 nanostructures.
机译:簇状一维非晶态二氧化硅纳米线的大规模合成是通过在包覆有催化剂FeCl2的氧化铝晶片上由全氢聚硅氮烷简单地热裂解非晶态陶瓷陶瓷粉末而实现的。扫描电子显微镜和透射电子显微镜观察表明,二氧化硅纳米线具有光滑的表面,长度为数百微米,直径为30-40nm。能量色散X射线光谱显示,这些纳米线由Si和O元素组成,原子比约为1:2,与化学计量式SiO2一致。在拉曼光谱中大约260 cm(-1)和800 cm(-1)中心的两个非晶凸起被确定为非晶二氧化硅。产生的二氧化硅纳米线的生长机理可以归因于气-液-固机理。这些结果为控制形貌的纳米结构提供了另一种简便的制备方法,有助于理解一维SiO2纳米结构的生长机理。

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