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XPS and LEED Analyses on Zirconium Oxide Modified (100) Surface of Molybdenum

机译:氧化锆改性(100)钼表面上的XPS和LEED分析

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It has been found that the work function of Mo(100) surface is able to reduce to 2.1 eV by heating it with a slight layer of zirconium oxide in a vacuum condition [1]. Here the low work function surface, which is abbreviated to ZrO/Mo(100), was examined aiming to understand the reducing mechanism of the work function. Low-energy electron diffraction (LEED) is employed to analyze atomic arrangement at the surface, and X-ray photoelectron spectroscopy (XPS) to identify the surface chemical condition. The experiment gives almost the same results as for the ZrO/W(100) low work function surface.
机译:已经发现,通过在真空条件下将其用少量氧化锆加热,可以减少到2.1eV的莫(100)表面的功函数[1]。这里,缩写为ZRO / Mo(100)的低功函数表面,旨在了解工作功能的还原机制。低能量电子衍射(LEED)用于分析表面的原子排列,X射线光电子能谱(XPS)以鉴定表面化学条件。实验与ZrO / W(100)低功函数表面具有几乎相同的结果。

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