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Synthesis of Silicon Nanostructures using DC- Arc Thermal Plasma: Effect of Ambient Hydrogen on Morphology

机译:DC弧热等离子体合成硅纳米结构:环境氢对形态的影响

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Silicon nanoparticles (Si-NPs) were synthesized using thermal plasma assisted gas phase condensation at different compositions of argon and hydrogen. The content of hydrogen in argon was varied from 0 to 15 mole percent. Synthesized nanoparticles were characterized by Transmission Electron Microscopy (TEM) and Fourier Transform Infrared spectroscopy (FTIR). Noticeable change in the morphology of nanostructures was observed with changing hydrogen content. Si-NPs synthesized in the presence of argon consisted of flake like structures, mostly amorphous. With increase in hydrogen concentration, flake like structures disappeared and prominent spherical structures and nanowires were observed. On further increasing hydrogen content spherical crystalline nanostructures with a tail of nanowire were formed and then nanoplatelets of SiC along with silicon nanostructures were observed. Different parameters that changed owing to different hydrogen concentration, were calculated and it is attempted to predict the cause of changing morphology.
机译:在不同组合物的氩和氢的不同组合物中使用热等离子体辅助气相缩合合成硅纳米颗粒(Si-NPS)。氩气中的氢气含量从0〜15摩尔%变化。通过透射电子显微镜(TEM)和傅里叶变换红外光谱(FTIR)以合成的纳米颗粒特征。通过改变氢含量观察到纳米结构形态的显着变化。在氩气的存在下合成的Si-NP包括薄片,如结构,大多是无定形的。随着氢浓度的增加,观察到薄片状结构消失,球形结构和纳米线被观察到。在进一步增加具有纳米线的尾部的氢含量球形晶体纳米结构,然后观察到SiC的纳米型纳米型纳米结构。计算出由于不同的氢浓度而改变的不同参数,并试图预测改变形态的原因。

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