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Hydrothermal Synthesis and Structural Characterization of NiO/SnO2Composites and Hydrogen Sensing Properties

机译:NiO / SnO2孔料和氢感特性的水热合成与结构表征

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摘要

Pure SnO2 and NiO doped SnO2 nanostructures were successfully synthesized via a simple and environment-friendly hydrothermal method. X-ray powder diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS), and X-ray photoelectron spectra (XPS) were used to investigate the crystalline structures, surface morphologies and microstructures, and element components and their valences of the as-synthesized samples. Furthermore, planar chemical gas sensors based on the synthesized pure SnO2 and NiO/SnO2 composites were fabricated and their sensing performances to hydrogen, an important fault characteristic gas dissolved in power transformer oil, were investigated in detail. Gas sensing experiments indicate that the NiO/SnO2 composites showed much higher gas response and lower working temperature than those of pure SnO2, which could be ascribed to the formation of p-n heterojunctions between p-type NiO and n-type SnO2. These results demonstrate that the as-synthesized NiO/SnO2 composites a promising hydrogen sensing material.
机译:通过简单环保的水热法成功地合成纯SnO2和NiO掺杂的SnO2纳米结构。 X射线粉末衍射(XRD),扫描电子显微镜(SEM),能量分散X射线光谱(EDS)和X射线光电子谱(XPS)研究了晶体结构,表面形态和微观结构和元件组件及其合成样本的价值。此外,制造了基于合成的纯SnO2和NiO / SnO2复合材料的平面化学气体传感器,并详细研究了它们对氢气的感测性能,这是一种重要的故障特征气体,溶解在电力变压器油中。气体传感实验表明,NiO / SnO2复合材料显示出比纯SnO2的气体响应和更低的工作温度较低,这可以归因于p型NiO和N型SnO2之间的P-N异质结的形成。这些结果表明,AS合成的NIO / SNO2复合材料是有前途的氢传感材料。

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