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Sol-Gel Prepared Single Wall Carbon Nanotube SnO_2 Thin Film for Micromachined Gas Sensor

机译:溶胶凝胶制备的微机械气体传感器单壁碳纳米管SnO_2薄膜

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摘要

We report here a novel micromachined single wall carbon nanotube (SWNT)/tin dioxide (SnO_2) nano film gas sensor. A polymeric sol-gel process in combination with purified SWNT has been successfully developed in fabricating SWNT/SnO_2 thin film nanocomposite sensor on an alumina substrate. The test of the novel nanocomposite gas sensors has been conducted for hydrogen detection, in comparison with sol gel derived SnO_2 thin film. The test results show that SWNT has greatly improved the nano-SnO_2 thin film's gas sensing property, in terms of lower working temperature, greater sensitivity (a factor of 3), faster response time and recovery time, and less drift of resistance. The improved capabilities are credited to the large surface to volume ratio of gas sensing thin film with nano passes created by SWNT, and the distance between adjacent passages being less than electron depletion layer thickness is defined by SWNT. The fabrication process is compatible with IC industry thus it is cost effective for batch production.
机译:我们在这里报告一种新型的微机械单壁碳纳米管(SWNT)/二氧化锡(SnO_2)纳米膜气体传感器。已成功开发了与纯化的SWNT结合的聚合物溶胶-凝胶工艺,用于在氧化铝基板上制造SWNT / SnO_2薄膜纳米复合传感器。与溶胶凝胶衍生的SnO_2薄膜相比,已经对新型纳米复合气体传感器进行了氢检测。测试结果表明,SWNT在更低的工作温度,更高的灵敏度(3倍),更快的响应时间和恢复时间以及更少的电阻漂移方面极大地改善了纳米SnO_2薄膜的气敏特性。改进的性能归因于SWNT产生的具有纳米通道的气体传感薄膜的大表面体积比,而相邻通道之间的距离小于电子耗尽层厚度由SWNT定义。制造工艺与IC行业兼容,因此批量生产具有成本效益。

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