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Highly Sensitive Detection of NO2 by Au and TiO2 Nanoparticles Decorated SWCNTs Sensors

机译:Au和TiO2纳米粒子修饰的SWCNTs传感器对NO2的高灵敏度检测

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摘要

The aim of this work is to investigate the gas sensing performance of single wall carbon nanotubes (SWCNTs)-based conductive sensors operating at low–medium temperatures (<250 °C). The investigated sensing films consists of an SWCNT network obtained by drop-casting a SWCNT suspension. Starting from this base preparation, different sensing devices were obtained by decorating the SWCNT network with materials suitable for enhancing the sensitivity toward the target gas. In particular, in this paper, nano-particles of gold and of TiO were used. In the paper, the performance of the different sensing devices, in terms of response time, sensitivity toward NO and cross-sensitivity to O , CO and water vapor, were assessed and discussed. Sensors based on decorated SWCNT films showed high performance; in particular, the decoration with Au nano-particles allows for a large enhancement of sensitivity (reaching 10%/1 ppm at 240 °C) and a large reduction of response time. On the other hand, the addition of TiO nanoparticles leads to a satisfactory improvement of the sensitivity as well as a significant reduction of the response time at moderate temperatures (down to 200 °C). Finally, the suitability of using Au decorated SWCNTs-based sensors for room temperature sensing is demonstrated.
机译:这项工作的目的是研究在中低温(<250°C)下运行的基于单壁碳纳米管(SWCNTs)的导电传感器的气体传感性能。所研究的传感膜由通过滴铸SWCNT悬浮液获得的SWCNT网络组成。从此基础准备工作开始,通过使用适合增强对目标气体敏感性的材料装饰SWCNT网络,获得了不同的传感设备。特别是,在本文中,使用了金和TiO的纳米粒子。在本文中,评估并讨论了不同传感设备的性能,包括响应时间,对NO的敏感性以及对O,CO和水蒸气的交叉敏感性。基于装饰性SWCNT膜的传感器显示出高性能;特别是,用金纳米粒子装饰可以大大提高灵敏度(在240°C时达到10%/ 1 ppm)并大大缩短响应时间。另一方面,TiO 2纳米颗粒的添加导致灵敏度的令人满意的提高,以及在中等温度(低至200°C)下响应时间的显着减少。最后,证明了使用金装饰的基于SWCNTs的传感器进行室温感测的适用性。

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