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Microwave flexible gas sensor based on polymer multi wall carbon nanotubes sensitive layer

机译:基于聚合物多壁碳纳米管敏感层的微波柔性气体传感器

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This study presents the feasibility and the first real time results of microwave flexible gas sensor based on poly (3,4-ethylenedioxythiophene) polystyrene sulfonate - multi wall carbon nanotubes (PEDOT:PSS-MWCNTs) as sensitive material, deposited by inkjet printing technology. The sensor is suitable for wireless applications, it consists of two stub resonators on kapton in order to provide a differential detection. The final aim of this work is to develop a low cost communicating sensor which can be integrated into real time multi sensing platform dedicated to the applications requiring low power consumption and adaptable for the Internet of Things (loT), in order to do the detection of harmful gases such as Volatile Organic Compounds (VOCs). Preliminary results have shown a large influence of ethanol concentration on the electrical properties of the passive resonators at radio-frequency range. These vapors have induced additional insertion losses and frequency shifts on the first resonant frequency mode around 0.65 GHz. The sensor sensitivity to ethanol vapors exposition has been estimated to -642.9 Hz/ppm and -7 μdB/ppm for resonant frequency and insertion losses variations in differential mode, respectively, according to the values at 4min of exposure to 500,1000 and 2000 ppm. To deepen the study of the sensor, we have focused on the influence of ethanol on the conductivity of the sensitive layer, in terms of repeatability and sensitivity. We proposed a way of real-time reconstruction of the response by representing the difference of the insertion losses as well as the difference of frequencies calculated on the basis of the phase average value within a specified frequency range near the resonance. This lead to estimate a sensitivity of -9 μdB/ppm and 648.1 Hz/ppm, respectively, for ethanol concentrations ranging from 500 ppm to 2000 ppm at 10 min of exposure.
机译:本研究提出了以聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐-多壁碳纳米管(PEDOT:PSS-MWCNTs)为敏感材料,通过喷墨印刷技术沉积的微波柔性气体传感器的可行性和首次实时结果。该传感器适用于无线应用,它由kapton上的两个短截谐振器组成,以提供差分检测。这项工作的最终目的是开发一种低成本的通信传感器,该传感器可以集成到实时多感测平台中,该平台专用于要求低功耗且适用于物联网(loT)的应用,以便进行传感器的检测。有害气体,例如挥发性有机化合物(VOC)。初步结果表明,乙醇浓度对无源谐振器在射频范围内的电性能影响很大。这些蒸气在0.65 GHz附近的第一谐振频率模式下引起了额外的插入损耗和频率偏移。根据暴露于500,1000和2000 ppm下4min时的值,对于差分模式下的谐振频率和插入损耗变化,传感器对乙醇蒸气暴露的敏感度分别估计为-642.9 Hz / ppm和-7μdB/ ppm。 。为了加深对传感器的研究,我们从重复性和灵敏度方面着眼于乙醇对敏感层电导率的影响。我们提出了一种实时重建响应的方法,通过表示插入损耗的差异以及根据共振附近指定频率范围内的相位平均值计算出的频率差异。这导致在暴露10分钟时,乙醇浓度在500 ppm至2000 ppm范围内时,灵敏度分别为-9μdB/ ppm和648.1 Hz / ppm。

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