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Auger parameters and Wagner plots

机译:俄歇参数和Wagner图

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摘要

A brief review on the use of Auger parameters and Wagner plots (chemical-state plots) in the characterization of surfaces by XPS is presented with particular reference on their applications to barium compounds. Computational (Tinker) and computer graphic (Molden) programs, available free of charge from the web permit, respectively, the calculation of Auger parameter shifts at the electrostatical level of theory and the graphical display of the atomic structures involved. An application of these methods is reported for a BaCl2 crystal, considering the Auger parameter shift of Ba2+ ions in different localizations. The effects of distant cations and anions from the ion with the core hole may be easily investigated together with the effect of decreasing the coordination number of an ion because of its localization at the surface of the material. For such an ion, the effect of adsorbed molecules (e.g. water and hydrogen sulfide molecules) on the Auger parameter shift can also be calculated. The initial- and final-state effects determine the localization of a barium compound in the Wagner plot which is a very useful tool in the chemical-state analysis.
机译:简要回顾了XPS在表征表面时使用俄歇参数和Wagner图(化学状态图)的过程,并特别参考了其在钡化合物上的应用。可从网上免费获得的计算(Tinker)和计算机图形(Molden)程序分别允许在静电的理论水平上计算俄歇参数位移,并以图形方式显示所涉及的原子结构。考虑到Ba2 +离子在不同位置的俄歇参数位移,这些方法在BaCl2晶体中的应用已有报道。由于离子位于材料表面,可以很容易地研究远离离子和带有中心孔的离子的影响,以及减少离子的配位数的影响。对于这种离子,还可以计算出吸附分子(例如水和硫化氢分子)对俄歇参数位移的影响。初始状态和最终状态的影响决定了Wagner图中钡化合物的定位,这是化学状态分析中非常有用的工具。

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