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首页> 外文期刊>Nanoscale >Synthesis and optical property of large-scale centimetres-long silicon carbide nanowires by catalyst-free CVD route under superatmospheric pressure conditions
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Synthesis and optical property of large-scale centimetres-long silicon carbide nanowires by catalyst-free CVD route under superatmospheric pressure conditions

机译:大规模的合成及光学性质厘米长碳化硅纳米线catalyst-free CVD superatmospheric下路线压力条件

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Large-scale centimetres-long single-crystal (3-SiC nanowires have been prepared using CH4 as the carbon source and SiO or the mixture of Si and SiO2 as the silicon source by a simple catalyst-free CVD route under superatmospheric pressure conditions. The nanowries grown on ceramic boat or corundum substrates, with lengths of several centimetres and the average diameters of around 40 nm, were composed of single-crystal β-SiC core along the [111] direction and amorphous SiO2 shell of about 1-30 nm thick depending on the growth position along the flowing direction of the carrier gas. The total gas pressure is an important factor for the synthesis of the large-scale centimetres-long β-SiC nanowires, which can easily adjust the pressure of the vapors to supersaturation condition. The growth of the nanowires was governed by the Vapor-Solid mechanism. The β-SiC nanowires showed an intense blue light emission at room temperature.
机译:大规模厘米长单晶(3-SiC纳米线已经准备使用甲烷作为碳源和SiO或Si的混合物二氧化硅为硅源通过一个简单的catalyst-free CVD superatmospheric下路线压力条件。船只或刚玉陶瓷基板,长度几厘米,平均直径大约40纳米,是由单晶βsic沿[111]方向和核心无定形二氧化硅壳的外墙面nm厚根据位置在增长载气的流动方向。气体压力是一个重要的因素合成的大规模厘米长βsic纳米线,可以很容易地调整过度饱和蒸汽的压力条件。由Vapor-Solid机制。纳米线显示了强烈的蓝光发射在室温下。

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