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Surface charges and optical characteristic of colloidal cubic SiC nanocrystals

机译:胶态立方SiC纳米晶体的表面电荷和光学特性

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摘要

Colloidal cubic silicon carbide (SiC) nanocrystals with an average diameter of 4.4 nm have been fabricated by anisotropic wet chemical etching of microsized cubic SiC powder. Fourier transform infrared spectra show that these cubic SiC nanocrystals contain carboxylic acid, SiH, CH, and CHx groups. UV/Vis absorption and photoluminescence (PL) spectroscopy clearly indicate that water and ethanol colloidal suspensions of the as-fabricated colloidal samples exhibit strong and above band gap blue and blue-green emissions. The cubic SiC nanocrystals show different surface charges in water and ethanol solutions due to the interaction of water molecules with polar Si-terminated surfaces of cubic SiC nanocrystals. The results explain the distinctive optical characteristics of colloidal cubic SiC nanocrystals in water and ethanol, and reveal that quantum confinement and surface charges play a great role in determining the optical characteristics of colloidal cubic SiC nanocrystals.
机译:通过对微米级立方SiC粉末进行各向异性湿化学刻蚀,制备了平均直径为4.4 nm的胶体立方碳化硅(SiC)纳米晶体。傅立叶变换红外光谱表明,这些立方SiC纳米晶体包含羧酸,SiH,CH和CHx基团。 UV / Vis吸收和光致发光(PL)光谱清楚地表明,所制备的胶体样品的水和乙醇胶体悬浮液显示出强且高于带隙的蓝和蓝绿色发射。由于水分子与极性SiC纳米晶的极性硅端基相互作用,立方SiC纳米晶在水和乙醇溶液中显示出不同的表面电荷。结果解释了胶体立方SiC纳米晶体在水和乙醇中的独特光学特性,并揭示了量子限制和表面电荷在确定胶体立方SiC纳米晶体的光学特性中起着重要作用。

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