首页> 外文期刊>Journal of Physics. Condensed Matter >Barium and oxygen interaction on the Ni(110) surface at low coverages studied by soft x-ray photoemission spectroscopy: Ba negative binding energy shifts and their correlation with Auger electron spectroscopy shifts
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Barium and oxygen interaction on the Ni(110) surface at low coverages studied by soft x-ray photoemission spectroscopy: Ba negative binding energy shifts and their correlation with Auger electron spectroscopy shifts

机译:通过软X射线光电子能谱研究低覆盖率下Ni(110)表面上的钡和氧相互作用:Ba负结合能移动及其与俄歇电子能谱移动的相关性

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In this work, barium and oxygen interaction on the Ni(110) surface is investigated, by means of soft x-ray photoemission spectroscopy (SXPS), mainly at submonolayer and monolayer coverages. The results show that oxygen interacts with barium and the substrate as well forming BaO and NiO respectively. The formation of both oxides is consistent with previous Auger electron spectroscopy (AES) results. The oxidation of barium on the surface induces negative binding energy shifts of the Ba low core atomic levels 4d, 5s and 5p. Both initial and final state effects are shown to be necessary in order to explain these peculiar energy shifts. This interpretation is based on correlating the core level binding energy shifts with previously recorded AES transition line shifts, also taking into account the changes of the work function of the surface. The analysis shows that the extra-atomic relaxation energy decreases on going from metallic Ba to BaO. This implies that the reduction of the free electron screening more than counteracts the increase in relaxation energy due to the polarizable O2- anions.
机译:在这项工作中,通过软X射线光电子能谱(SXPS)研究了Ni(110)表面上钡和氧的相互作用,主要是在亚单层和单层覆盖上。结果表明,氧与钡和基底相互作用,分别形成BaO和NiO。两种氧化物的形成与先前的俄歇电子能谱(AES)结果一致。钡在表面上的氧化引起Ba低核原子能级4d,5s和5p的负结合能移动。为了解释这些特殊的能量转移,初始状态效应和最终状态效应都被证明是必需的。该解释基于将核心能级结合能移动与先前记录的AES过渡线移动相关联,同时还考虑了表面功函数的变化。分析表明,从金属Ba到BaO,原子外弛豫能降低。这意味着自由电子屏蔽的减少远远抵消了由于可极化的O2-阴离子引起的弛豫能量的增加。

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