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Synthesis of β-SiC nanowires via a facile CVD method and their photoluminescence properties

机译:通过容易CVD法合成β-SiC纳米线及其光致发光性能

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β-SiC nanowires with large scale have been synthesized successfully via a chemical vapour deposition (CVD) method at 1300 °C without using catalysts, templates or extra gases. X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), Fourier transform infrared spectroscopy (FT-IR) and energy-dispersive X-ray spectroscopy (EDS) were used to characterize the phase and the morphology of the as-prepared products. Characterization of the as-synthesized nanowires indicated that they were made up of a crystalline SiC core coated with an amorphous SiO _(2) shell. A vapor–solid (VS) growth mechanism was proposed for the growth mode of the as-grown SiC/SiO _(2) nanowires. The photoluminescence (PL) spectrum of as-obtained nanowires exhibited a significant blue shift compared with the bulk SiC. When the reaction temperature was changed (1200 °C, 1400 °C, 1500 °C), low production or irregular morphology of the nanowires was obtained. The diameter of nanowires synthesized with catalyst was narrower between 20–40 nm while that without catalyst was about 50 nm. The as-synthesized products have potential in future blue-green emitting device applications. This research will also be helpful in simplifying the synthesis of SiC-related nanostructures.
机译:在1300℃下通过化学气相沉积(CVD)方法成功合成具有大规模的β-SiC纳米线,而不使用催化剂,模板或额外的气体。 X射线衍射(XRD),场发射扫描电子显微镜(FESEM),傅里叶变换红外光谱(FT-IR)和能量分散X射线光谱(EDS)用于表征AS-的相位和形态制备的产品。作为合成纳米线的表征表明它们由涂有无定形SiO _(2)壳的结晶SiC芯而成。提出了用于生长SiC / SiO _(2)纳米线的生长模式的蒸汽固体(Vs)生长机制。与散装SiC相比,可获得纳米线的光致发光(PL)谱表现出显着的蓝色偏移。当反应温度改变时(1200℃,1400℃,1500℃),获得纳米线的低产生或不规则形态。用催化剂合成的纳米线的直径在20-40nm之间较窄,而没有催化剂为约50nm。合成的产品在未来的蓝绿发射器件应用中具有潜力。该研究还将有助于简化SiC相关纳米结构的合成。

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