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Self-powered gas sensor using thin-film photovoltaic cell and microstructured colorimetric film

机译:使用薄膜光伏电池和微结构比色膜的自供电气体传感器

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We have developed a self-powered gas sensor operating without external power under a light source, unlike a sensor that requires an external power source, such as a chemiresistive gas sensor or an electrochemical gas sensor. The sensor consists of a colorimetric film and an organic solar cell. The sensor uses a color change caused by the reaction of the N,N,N',N'-tetramethyl-p-phenylenediamine (TMPD) with NO gas. The color change caused by the redox reaction of the colorimetric material does not require a separate light source and photodetector, unlike the conventional colorimetric sensor, because it directly changes the output of the solar cell by changing the transmittance of the film. Using this sensor, 1, 5, 10, 20ppm NO gas was detected without external power source, and the performance of the gas sensor could be improved by using microstructure. This work is the first demonstration of self-powered gas sensor based on the combination of photovoltaic cell and microstructured colorimetric film.
机译:我们开发了一种自供电的气体传感器,该传感器无需在光源下使用外部电源即可工作,这与需要外部电源的传感器(例如化学气体传感器或电化学气体传感器)不同。该传感器由比色膜和有机太阳能电池组成。该传感器使用由N,N,N',N'-四甲基对苯二胺(TMPD)与NO气体反应引起的颜色变化。与常规的比色传感器不同,由比色材料的氧化还原反应引起的颜色变化不需要单独的光源和光电检测器,因为它通过改变薄膜的透射率直接改变了太阳能电池的输出。使用该传感器,无需外部电源即可检测到1、5、10、20ppm的NO气体,并且通过使用微结构可以提高气体传感器的性能。这项工作是基于光伏电池和微结构比色膜组合的自供电气体传感器的首次演示。

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