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首页> 外文期刊>Applied Surface Science >Competitive adsorption of SF_6 decompositions on Ni-doped ZnO (100) surface: Computational and experimental study
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Competitive adsorption of SF_6 decompositions on Ni-doped ZnO (100) surface: Computational and experimental study

机译:SF_6分解物在镍掺杂的ZnO(100)表面上的竞争性吸附:计算和实验研究

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摘要

In this paper, the adsorption models of three SF6 decomposition gas (SO2, SOF2, SO2F2) on the Ni-doped ZnO (100) surface were established based on density functional theory (DFT). The structural and electronic properties of intrinsic and Ni-doped ZnO (100) surface after gas adsorption were analyzed to clarify the adsorption capacity and sensing mechanism. In addition, the adsorption parameters of Ni-doped ZnO (100) surface and intrinsic ZnO (100) surface were compared. The results show that Ni-doped ZnO (100) surface has a strong chemical adsorption effect on SO2 and SO2F2, while exhibits weaker physical adsorption to SOF2. Compared with intrinsic ZnO (100) surface, the adsorption capacity of three gas molecules were obviously enhanced after Ni doping, implying Ni dopant can significantly improve the sensitivity and selectivity of ZnO materials to SO2, SOF2, SO2F2 gases. Meanwhile, gas sensing experiment of intrinsic and Ni-doped ZnO materials towards SO2, SOF2, and SO2F2 was carried out. All results lay a solid foundation for exploring high-performance ZnO based sensors to detect SF6 decomposition components for GIS partial discharge defect diagnose.
机译:基于密度泛函理论(DFT),建立了三种SF6分解气体(SO2,SOF2,SO2F2)在掺Ni的ZnO(100)表面的吸附模型。分析了气体吸附后本征和掺杂Ni的ZnO(100)表面的结构和电子性质,以阐明吸附能力和传感机理。另外,比较了掺Ni的ZnO(100)表面和本征ZnO(100)表面的吸附参数。结果表明,掺Ni的ZnO(100)表面对SO2和SO2F2具有较强的化学吸附作用,而对SOF2的物理吸附较弱。与本征ZnO(100)表面相比,Ni掺杂后三个气体分子的吸附能力明显增强,这表明Ni掺杂剂可以显着提高ZnO材料对SO2,SOF2,SO2F2气体的敏感性和选择性。同时,进行了本征和Ni掺杂的ZnO材料对SO2,SOF2和SO2F2的气敏实验。所有结果为探索基于ZnO的高性能传感器检测SF6分解成分以进行GIS局部放电缺陷诊断奠定了坚实的基础。

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