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首页> 外文期刊>Sensor Letters: A Journal Dedicated to all Aspects of Sensors in Science, Engineering, and Medicine >Effects of UV Light Illumination on the Gas Sensing Properties of ZnO-SnO_2 Thick Film Sensor
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Effects of UV Light Illumination on the Gas Sensing Properties of ZnO-SnO_2 Thick Film Sensor

机译:紫外线照射对ZnO-SnO_2厚膜传感器的气敏特性的影响

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摘要

The effects of UV light illumination on the gas sensing performances of zinic oxide-tin oxide (ZnO-SnO_2) thick film sensor toward ethanol have been investigated. The nanopowder sizes of SnO_2 synthesized by precipitation process are about 30 nanometer. The commercial ZnO powder in various weight ratios (10~90 wt%) were mixed into SnO_2 nanopowder. The results of gas properties measurement show that there is obvious enhancement in the sensitivity to ethanol with UV light illumination. As be exposed to 100 ppm ethanol, the sensor based on 30 wt% ZnO - 70 wt% SnO_2 mixed sensitivity materials has a sensitivity of up to 10 with UV light illumination. The X-ray diffraction (XRD) characterization reveals that the sensitive materials are the mixture of SnO_2 with ZnO and without anything else. The reason for that the gas sensitivity of the mixture of ZnO and SnO_2 was increased is presumably that the ZnO enhances the ability to transfer photo-generated charge and then increases the sensitivity under UV illumination.
机译:研究了紫外光照射对氧化锌-氧化锡(ZnO-SnO_2)厚膜传感器对乙醇的气敏性能的影响。通过沉淀法合成的SnO_2的纳米粉体尺寸约为30纳米。将各种重量比(10〜90 wt%)的市售ZnO粉末混合到SnO_2纳米粉中。气体性质的测量结果表明,用紫外线照射对乙醇的敏感性明显提高。当暴露于100 ppm的乙醇中时,基于30 wt%ZnO-70 wt%SnO_2混合敏感度材料的传感器在UV光照射下的灵敏度最高可达10。 X射线衍射(XRD)表征表明,敏感材料是SnO_2与ZnO的混合物,没有其他任何物质。 ZnO和SnO_2混合物的气体敏感性增加的原因可能是ZnO增强了转移光生电荷的能力,然后增加了在紫外线照射下的敏感性。

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