Abstract
Tin oxide (SnO2) nanowires were synthesized on oxidized silicon substrates by thermal evaporation of tin grains at 900°C in Ar flow at ambient pressure. Structural characterization using X-ray diffraction and transmission electron microscopy shows that SnO2 nanowires have a single crystal tetragonal structure. Scanning electron microscopy observation demonstrates that SnO2 nanowires are 30-200 nm in diameter and several tens of micrometers in length. The surface vibration mode resulting from the nanosize effect at 565.1 cm-1 was found from the Fourier transform infrared spectrum. The formation of SnO2 nanowires follows a vapour-solid (VS) growth mechanism. The gas sensing measurements indicate that SnO2 nanowire gas sensor obtains peak sensitivity at a low operating temperature of 150°C and shows reversible response to H2 gas (100-1000 ppm) at an operating temperature of RT-300°C. © 2013 Dezhou Wei et al.
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CITATION STYLE
Wei, D., Shen, Y., Li, M., Liu, W., Gao, S., Jia, L., … Cui, B. (2013). Synthesis and characterization of single-crystalline SnO2 Nanowires. Journal of Nanomaterials, 2013. https://doi.org/10.1155/2013/761498
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