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Water vapor detection with individual tin oxide nano wires

机译:使用单个氧化锡纳米线检测水蒸气

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摘要

Individual tin oxide nanowires (NWs), contacted to platinum electrodes using focused ion beam assisted nanolithography, were used for detecting water vapor (1500-32 000 ppm) in different gaseous environments. Responses obtained in synthetic air (SA) and nitrogen atmospheres suggested differences in the sensing mechanism, which were related to changes in surface density of the adsorbed oxygen species in the two cases. A model describing the different behaviors has been proposed together with comparative evaluation of NW responses against sensors based on bulk tin oxide. The results obtained on ten individual devices (tested > 6 times) revealed the interfering effect of water in the detection of carbon monoxide and illustrated the intrinsic potential of nanowire-based devices as humidity sensors. Investigations were made on sensitivity, recovery time and device stability as well as surface-humidity interactions. This is the first step towards fundamental understanding of single-crystalline one-dimensional (1D) tin oxide nanostructures for sensor applications, which could lead to integration in real devices.
机译:使用聚焦离子束辅助纳米平版印刷术与铂电极接触的单个氧化锡纳米线(NWs)用于检测不同气体环境中的水蒸气(1500-32 000 ppm)。在合成空气(SA)和氮气氛中获得的响应表明,传感机制有所不同,这与两种情况下吸附的氧物种的表面密度变化有关。已经提出了一个描述不同行为的模型,并针对基于散装氧化锡的传感器对NW响应进行了比较评估。在十个单独的设备上获得的结果(经测试> 6次)揭示了水对一氧化碳检测的干扰作用,并说明了基于纳米线的设备作为湿度传感器的内在潜力。对灵敏度,恢复时间和设备稳定性以及表面湿度相互作用进行了研究。这是朝着对用于传感器应用的单晶一维(1D)氧化锡纳米结构进行基本了解的第一步,这可能导致集成到实际设备中。

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