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The effect of light irradiation on the gas-sensing properties of nanocomposites based on ZnO and Ag nanoparticles

机译:光辐照对基于ZnO和Ag纳米颗粒的纳米复合材料的气敏性能的影响

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摘要

Highly porous pure and silver-doped ZnO 3D nanostructures were formed by PLD in open air with a view of sensor applications. Under irradiation with UV light, the response of pure ZnO and of Ag-ZnO sensor elements was studied to NH3, CO, ethanol, and acetone. The presence of Ag nanoparticles in the ZnO nanostructure improved considerably the sensor elements' response to all tested gases. Further, the effect was investigated of simultaneous UV and red light irradiation on the sensor elements' response and time of response and recovery. It was found that UV and optimized red irradiation resulted in enhancing the Ag-ZnO sensor's response to CO, while suppressing its response to NH3, ethanol, and acetone. The nanocomposite sensor exhibited a strong and stable response signal at 1 ppm CO exposure, which made us presume that measuring lower concentrations is also achievable.
机译:考虑到传感器的应用,PLD在露天条件下形成了高度多孔的纯银掺杂的ZnO 3D纳米结构。在紫外线照射下,研究了纯ZnO和Ag-ZnO传感器元件对NH3,CO,乙醇和丙酮的响应。 ZnO纳米结构中Ag纳米颗粒的存在大大改善了传感器元件对所有测试气体的响应。此外,研究了同时照射紫外线和红色光对传感器元件的响应以及响应和恢复时间的影响。发现紫外线和优化的红色辐射可增强Ag-ZnO传感器对CO的响应,同时抑制其对NH3,乙醇和丙酮的响应。纳米复合材料传感器在1 ppm CO暴露下显示出强大而稳定的响应信号,这使我们推测也可以实现较低浓度的测量。

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