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Carbon Nanotube Thin Films Functionalized via Loading of Au Nanoclusters for Flexible Gas Sensors Devices

机译:碳纳米管薄膜通过金纳米簇的装载功能化,用于柔性气体传感器设备

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Carbon nanotubes (CNTs) have been demonstrated to be one of the most interesting materials for gas sensing. This paper applies a simple method for the direct transfer of high-density CNTs from a SiO/Si substrate to a flexible substrate for carbon dioxide (CO), ammonia (NH), and isopropyl alcohol gas sensing at room temperature. The flexible gas sensor exhibited high sensitivities of 4.8%, 5.4%, and 5.2% at room temperature for ambient CO, NH, and isopropyl alcohol gas concentrations of 800 ppm, respectively. In addition, the gas response of the CNT-based chemiresistor is attributed to p-type conductivity in the Au-modified semiconducting CNTs. Very good repeatability of the sensor response to gas concentration is demonstrated, representing a major step toward the low-cost large-scale production of this class of device.
机译:碳纳米管(CNTs)已被证明是用于气体传感的最有趣的材料之一。本文采用一种简单的方法将高密度CNT从SiO / Si衬底直接转移到柔性衬底上,以在室温下检测二氧化碳(CO),氨(NH)和异丙醇气体。柔性气体传感器在室温下对800 ppm的环境CO,NH和异丙醇气体浓度分别显示出4.8%,5.4%和5.2%的高灵敏度。另外,基于CNT的化学电阻器的气体响应归因于Au改性的半导体CNT中的p型电导率。结果表明,传感器对气体浓度的响应具有非常好的重复性,这是向此类设备的低成本大规模生产迈出的重要一步。

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