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Synthesis and low-temperature photoluminescence properties of SnO_2 nanowires and nanobelts

机译:SnO_2纳米线和纳米带的合成及低温光致发光性能

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摘要

Ultra-long rutile tin dioxide nanowires and nanobelts are synthesized by thermal oxidation of tin powder using gold film as the catalyst. Nanowire or nanobelts can be selectively produced by tuning the reaction temperature. The vapour-liquid-solid growth mechanism is proposed. The band gaps of the nanowires and nanobelts are 3.74 and 3.81 eV respectively, determined from UV/visible absorption spectral results. The SnO_2 nanowires show stable photoluminescence with two emission peaks centred at around 470 and 560 nm. Their wavelengths stay almost fixed while their intensities depend sensitively on the temperatures within the examination ranges from 10 to 300 K. The SnO_2 nanobelts show similar photoluminescence behaviours and the origin of the luminescence is discussed.
机译:以金膜为催化剂,通过锡粉的热氧化,合成了超长的金红石型二氧化锡纳米线和纳米带。可以通过调节反应温度来选择性地生产纳米线或纳米带。提出了气液固增长机制。根据紫外/可见吸收光谱结果确定,纳米线和纳米带的带隙分别为3.74和3.81 eV。 SnO_2纳米线显示出​​稳定的光致发光,两个发射峰位于470和560 nm附近。它们的波长几乎保持固定,而强度则严格取决于10至300 K范围内的温度。SnO_2纳米带显示出相似的光致发光行为,并讨论了发光的起源。

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