Carbon nanotube-based SAW sensors

I. Sayago, M. J. Fernández, J. Fontecha, M. C. Horrillo, E. Terrado, A. Seral-Ascaso, E. Muñoz
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引用次数: 9

Abstract

Surface acoustic wave (SAW) gas sensors based on the use of carbon nanotube (CNT) networks as sensitive layers have been investigated for the detection of atmospheric gas pollutants: volatile organic compounds (VOCs), NO2, CO, and H2 . SAW sensor configuration consists of a delay line made on a piezoelectric substrate (ST -X cut quartz) and a sensitive layer (CNTs) deposited between the interdigital transducers (IDTs). CNT networks were fabricated by airbrushing single-walled-(SWCNTs) and double-walled- (DWCNTs) CNT dispersions onto quartz substrates. Among all the tested CNT materials and gases, only DWCNT -based SAW sensors were sensitive upon exposure to low concentration of octane and toluene, providing fast response and recovery times to these VOCs.
基于碳纳米管的SAW传感器
基于使用碳纳米管(CNT)网络作为敏感层的表面声波(SAW)气体传感器已被研究用于检测大气气体污染物:挥发性有机化合物(VOCs), NO2, CO和H2。SAW传感器的结构包括在压电衬底(ST -X切割石英)上制作的延迟线和沉积在数字间传感器(idt)之间的敏感层(CNTs)。碳纳米管网络是通过在石英衬底上喷绘单壁-(SWCNTs)和双壁-(DWCNTs)碳纳米管分散体来制备的。在所有测试的碳纳米管材料和气体中,只有基于DWCNT的SAW传感器在暴露于低浓度辛烷和甲苯时敏感,对这些voc提供快速的响应和恢复时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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