Toluene-sensing properties of In2O3 nanotubes synthesized by electrospinning

Abstract: The pristine In2O3 nanotubes were synthesized by electrospinning and subsequent calcination. Scanning electron microscope, X-ray powder diffraction and transmission electron micrograph were employed to analyze the morphology and crystal structure of the as-synthesized nanotubes. Gas-sensin...

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Veröffentlicht in:半导体学报:英文版 2014 (6), p.42-46
1. Verfasser: 迟霄 刘唱白 张金宝 刘丽 李海英 何越 薄小庆 刘丽丽
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Sprache:eng
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Zusammenfassung:Abstract: The pristine In2O3 nanotubes were synthesized by electrospinning and subsequent calcination. Scanning electron microscope, X-ray powder diffraction and transmission electron micrograph were employed to analyze the morphology and crystal structure of the as-synthesized nanotubes. Gas-sensing properties of the as-synthesized In203 nanotubes were investigated by exposing the corresponding sensors to toluene, acetone, ethanol, formalde- hyde, ammonia and carbon monoxide at 340 ℃. The results show that the gas sensor possesses a good selectivity to toluene at 340 ℃. The response of the In2O3 nanotube gas sensor to 40 ppm is about 5.88. The response and recovery times are about 3 s and 17 s, respectively.
ISSN:1674-4926
DOI:10.1088/1674-4926/35/6/064005