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Selective Sensors of Nitrogen Dioxide Based on Thin Tungsten Oxide Films under Optical Irradiation

机译:基于薄钨膜在光学辐照下的二氧化氮选择性传感器

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摘要

It is shown that NO2 present in air, beginning at a concentration of 1 ppm, can be selectively detected by sensors based on Au/WO3:Au thin films activated by laser diode radiation with maximum intensity at 400 nm instead of constant heating. The radiation-activated photodesorption reduces the time of sensor response to NO2. A high humidity of air under conditions of room-temperature irradiation additionally increases the device sensitivity to NO2 due to the appearance of additional adsorption sites. The absence of a sensor response to reducing gases and varying oxygen concentration in the atmosphere is caused by the photodesorption of chemisorbed O-2(-) species during their interaction with holes generated in intrinsic optical transitions in the near-surface region of WO3 film.
机译:结果表明,在空气中存在的NO 2在浓度为1ppm时,可以通过基于AU / WO3的传感器选择性地检测由激光二极管辐射激活的Au薄膜,最大强度为400nm而不是恒定加热。 辐射激活的光电十加值减少了传感器响应到NO2的时间。 由于附加吸附位点的外观,在室温照射条件下,在室温辐射条件下的空气的高湿度增加了对NO2的敏感性。 在大气中没有传感器响应降低气体和变化的氧浓度是由化学吸附的O-2( - )物种在其与WO3膜的近表面区域中的内在光学过渡中产生的孔的相互作用期间的光纤维引起的。

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