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Metallic nanoparticles functionalizing carbon nanotube networks for gas sensing applications

机译:用于气体传感应用的功能化碳纳米管网络的金属纳米颗粒

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摘要

We report the fabrication of carbon nanotube (CNT) based gas sensors functionalized with different metallic nanoparticles (NPs) (Au, Pd, Ag) with exceptionally high responses towards four test gases (NH_3, CO_2, CO and ethanol). The CNT networks were fabricated through a low cost spray deposition process while the NPs were deposited by a thermal evaporation process. CNT based gas sensors functionalized with Au with a nominal thickness of 1.0 nm showed superior response towards NH_3, CO and ethanol. The sensors' normalized responses reached 92%, 22% and 32% with concentrations of 100 ppm, 50 ppm and 100 ppm for NH_3, CO and ethanol respectively. CNT based gas sensors functionalized with Pd with a nominal thickness of 1.5 nm showed the best performance with CO_2. The normalized response reached 3%, 6%, 12% and 17% with concentrations of 500 ppm, 1000 ppm, 2500 ppm and 5000 ppm of CO_2 respectively. We also investigated the morphological and optical changes that occur to the NPs upon thermal treatment. Functionalization of CNT films deposited on glass with Au and Ag showed surface plasmon resonance effects that are dependent on the nominal thickness of the functionalization layer.
机译:我们报告了基于碳纳米管(CNT)的气体传感器的制造过程,该传感器具有不同的金属纳米颗粒(NP)(Au,Pd,Ag),对四种测试气体(NH_3,CO_2,CO和乙醇)具有异常高的响应。碳纳米管网络是通过低成本的喷涂沉积工艺制造的,而纳米颗粒是通过热蒸发工艺沉积的。使用标称厚度为1.0 nm的Au功能化的基于CNT的气体传感器显示出对NH_3,CO和乙醇的出色响应。 NH_3,CO和乙醇的浓度分别为100 ppm,50 ppm和100 ppm时,传感器的归一化响应分别达到92%,22%和32%。使用标称厚度为1.5 nm的Pd功能化的基于CNT的气体传感器在CO_2下表现出最佳性能。浓度分别为500 ppm,1000 ppm,2500 ppm和5000 ppm的CO_2时,归一化响应分别达到3%,6%,12%和17%。我们还研究了热处理后NP发生的形态和光学变化。用金和银对沉积在玻璃上的CNT膜进行功能化显示出表面等离子体共振效应,该效应取决于功能化层的标称厚度。

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