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An Inkjet Printed CO2 Gas Sensor

机译:喷墨印花CO2气体传感器

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摘要

In this paper a low cost CO2 sensor realized on a plastic substrate is presented. The sensor is realized by the deposition of a double layer of PEDOT/PSS (CLEVIOS~(TM) PHCV4, by H.C.Starck) and Graphene on InterDigiTed electrodes printed onto a PET (PolyEthylene Terephthalate) substrate. The InterDigiTed electrodes have been realized by inkjet printing a conductive pattern of a silver nano-particle solution (Metalon~R JS-B15P by Novacentrix), through a commercial EPSON~R inkjet printer. The sensing principle of the sensor exploits the change in electrical conductivity of graphene due to gas molecules adsorbtion. A device responsivity, at 30°C, of 45μOhm/ppm and a sensitivity of 100 ppm have been obtained respectively. Compared to solutions proposed in the literature, the inkjet printed device here presented has advantages related to its low cost, flexibility and low demanding fabrication. The device flexibility is crucial for application requiring the device shaping to irregular surfaces, such as dresses or food packaging.
机译:在本文中,提出了一种在塑料基板上实现的低成本CO2传感器。通过在印刷到PET(聚对苯二甲酸乙二醇酯)衬底上的分叉电极上,通过沉积PEDOT / PSS(CLEVIOS〜(TM)PHCV4,H.C.STARCK)和石墨烯来实现传感器。通过喷墨印刷银纳米颗粒溶液(Metalon〜R JS-B15P的Metalon〜R JS-B15P)通过商业EPSON〜R喷墨打印机来实现分叉电极。传感器的感测原理利用由于气体分子腺体引起的石墨烯导电率的变化。分别获得了45μOHM/ ppm的装置响应性,在45μOHM/ ppm和100ppm的灵敏度下获得。与文献中提出的解决方案相比,这里的喷墨印刷装置呈现出与其低成本,灵活性和低苛刻的制造相关的优点。该装置灵活性对于要求设备形状到不规则表面的应用是至关重要的,例如连衣套或食品包装。

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