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UV-Enhanced Ethanol Sensing Properties of RF Magnetron-Sputtered ZnO Film

机译:射频磁控溅射ZnO薄膜的紫外增强乙醇感测特性

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摘要

ZnO film was deposited by the magnetron sputtering method. The thickness of ZnO film is approximately 2 μm. The influence of UV light illumination on C2H5OH sensing properties of ZnO film was investigated. Gas sensing results revealed that the UV-illuminated ZnO film displays excellent C2H5OH characteristics in terms of high sensitivity, excellent selectivity, rapid response/recovery, and low detection limit down to 0.1 ppm. The excellent sensing performance of the sensor with UV activation could be attributed to the photocatalytic oxidation of ethanol on the surface of the ZnO film, the planar film structure with high utilizing efficiency of UV light, high electron mobility, and a good surface/volume ratio of of ZnO film with a relatively rough and porous surface.
机译:通过磁控溅射法沉积ZnO膜。 ZnO膜的厚度约为2μm。研究了紫外光照射对ZnO薄膜的C2H5OH感测性能的影响。气体感测结果表明,紫外线照射的ZnO膜在高灵敏度,优异的选择性,快速的响应/回收率和低至0.1 ppm的低检测限方面显示出出色的C2H5OH特性。具有紫外线活化作用的传感器的出色传感性能可归因于乙醇在ZnO薄膜表面上的光催化氧化,具有高的紫外线利用效率,高电子迁移率和良好的表面/体积比的平面薄膜结构具有相对粗糙和多孔表面的ZnO膜的厚度。

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