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首页> 外文期刊>Journal of Electronic Materials >SO2 and H2S Sensing Properties of Hydrothermally Synthesized CuO Nanoplates
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SO2 and H2S Sensing Properties of Hydrothermally Synthesized CuO Nanoplates

机译:SO2和H2S热合成的CuO纳米纳米的感测性能

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摘要

CuO nanoplates were synthesized by a facile hydrothermal method for a SO2 gas-sensing application. The synthesized materials were characterized by field-emission scanning electron microscopy (FE-SEM), powder x-ray diffraction (XRD), Raman spectroscopy, and photoluminescence spectroscopy. Gas-sensing characteristics were measured at various concentrations of SO2 and H2S at 200-350 degrees C. The results showed that rectangular CuO nanoplates with an average size of approximately 700 x 500 x 30 nm(3) were synthesized. FE-SEM and XRD analyses also depicted that the nanoplates were polycrystalline with an average crystal size of 12.85 nm. Gas-sensing measurements demonstrated that the synthesized CuO nanoplates exhibited p-type semiconducting behavior, where the sensor resistance increased upon exposure to H2S and decreased when exposed to SO2. The sensor showed a considerably higher response to SO2 than to H2S in the measured concentrations ranging from 1 Wppm to 10 ppm, suggesting that the CuO nanoplates are suitable for high-sensitivity SO2 sensing. We also clarified the sensing mechanism of the CuO nanoplate-based SO2 sensors.
机译:通过用于SO2气体传感施用的容易水热法合成CUO纳米层。通过现场排放扫描电子显微镜(Fe-SEM),粉末X射线衍射(XRD),拉曼光谱和光致发光光谱,表征合成材料。在200-350℃下以各种浓度的SO2和H2S测量气体传感特性。结果表明,合成了平均尺寸约为700×500×30nm(3)的矩形CuO纳米板。 Fe-SEM和XRD分析还描绘了纳米板的多晶,平均晶体尺寸为12.85nm。气体传感测量表明,合成的CuO纳米板具有p型半导体行为,其中在暴露于H 2S时,传感器阻力增加并在暴露于SO 2时降低。传感器对SO2的响应相当高于测量浓度的SO 2,从1wppm至10ppm的测量浓度中的H2s响应,表明CUO纳米板适用于高灵敏度SO2感测。我们还阐明了基于CuO纳米板的SO2传感器的感测机理。

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