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Carbon nanotube acoustic and optical sensors for volatile organic compound detection

机译:用于挥发性有机化合物检测的碳纳米管声光传感器

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摘要

Carbon nanotube coated acoustic and optical sensors have been successfully studied for volatile organic compound (VOC) sensing applications, at room temperature. Here, Langmuir-Blodgett (LB) films consisting of tangled bundles of single-walled carbon nanotubes (SWCNTs) have been transferred onto different transducing sensors by using a linker-buffer LB multilayered material of cadmium arachidate pre-deposited on the sensor surface to promote adhesion of SWCNTs. Two different kinds of sensors have been designed, fabricated and utilized: quartz crystal microbalance 10 MHz AT-cut quartz resonators and standard silica optical fibre sensors based on light reflectometry at a wavelength of 1310 nm. The proposed detection techniques are focused on two key parameters in gas sensing applications: mass and refractive index, and their changes induced by gas molecule absorption. The results indicate high sensitivity, good repeatability and reversibility. Signals from each sensor type have been analysed and processed by using pattern recognition techniques such as principal component analysis and use of artificial neural networks. The recognition of the hybrid system is successfully performed, improving the data fusion from acoustic and optical sensors with SWCNT-functionalized sensors that are highly discriminating. To our knowledge, this is the first reported study of combined hybrid integration of acoustic sensors with optical fibre sensors using nanostructured materials as single-walled carbon nanotubes for VOC detection, at room temperature.
机译:碳纳米管涂层的声光传感器已在室温下成功地研究了挥发性有机化合物(VOC)的传感应用。在这里,通过使用预先沉积在传感器表面的花生四烯酸镉的连接缓冲液LB多层材料,将由缠结的单壁碳纳米管(SWCNT)束组成的Langmuir-Blodgett(LB)膜转移到不同的传感器上。单壁碳纳米管的附着力。已经设计,制造和使用了两种不同类型的传感器:石英晶体微天平10 MHz AT切割石英谐振器和基于1310 nm波长的光反射法的标准石英光纤传感器。提议的检测技术着重于气体传感应用中的两个关键参数:质量和折射率,以及由气体分子吸收引起的变化。结果表明高灵敏度,良好的重复性和可逆性。通过使用模式识别技术(例如主成分分析和人工神经网络)对来自每种传感器类型的信号进行了分析和处理。混合系统的识别已成功完成,并通过高度区分性的SWCNT功能化传感器改善了声音和光学传感器的数据融合。据我们所知,这是首次报道将声传感器与光纤传感器混合混合集成的研究,该传感器使用纳米结构材料作为单壁碳纳米管在室温下进行VOC检测。

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