Development of micromachined nanocrystalline mesoporous SnO/sub 2/ gas sensor for electronic nose

Jianwei Gong, Weifeng Fei, Zheng Xia, Quanfang Chen, S. Seal, L. Chow
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引用次数: 5

Abstract

MEMS based sol gel synthesized mesoporous nanocrystalline SnO/sub 2/ gas sensor has been developed. The SnO/sub 2/ nano film is fabricated with the combination of polymeric sol gel chemistry with block copolymers used as structure directing agents. The novel hydrogen sensor has a fast response time (1s) and quick recovery time (3s), as well as good sensitivity (up to 90), comparing to other hydrogen sensors developed. The working temperature of the new sensor can be reduced as low as 100/spl deg/C. The low working temperature poses advantages such as lower power consumption; lower thermal induced signal shift as well as safe detection in certain environments where temperature is strictly limited. The developed sensor cell will be used to develop a high sensitivity and high selectivity electronic nose for harmful gas detection by combining different catalysts doped SnO/sub 2/ gas sensor array with fuzzy neural network.
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电子鼻用微机械纳米晶介孔SnO/ sub2 /气体传感器的研制
研制了基于MEMS溶胶凝胶合成的介孔纳米SnO/sub /气体传感器。以嵌段共聚物为结构导向剂,采用聚合溶胶-凝胶化学方法制备了SnO/sub - 2/纳米膜。与目前开发的其他氢传感器相比,新型氢传感器具有响应时间快(1s)、恢复时间快(3s)、灵敏度高(可达90)等优点。新型传感器的工作温度可低至100/spl℃。低工作温度具有低功耗等优点;较低的热诱导信号移位,以及在温度严格限制的某些环境下的安全检测。该传感器电池将不同催化剂掺杂SnO/ sub2 /气体传感器阵列与模糊神经网络相结合,用于开发高灵敏度、高选择性的有害气体检测电子鼻。
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