Origin of chemical shifts in K 2p x-ray photoelectron spectra

化学位移 谱线 化学 结合能 X射线光电子能谱 离子 星团(航天器) 分析化学(期刊) Atom(片上系统) 原子物理学 金属 相(物质) 电离 辐照 碳酸钾 分辨率(逻辑) 电离能 材料科学 铌酸钾 质子 光谱学
作者
Elena A. Skryleva,Boris R. Senatulin,Tatiana S. Ilina,Sofia V. Torianik,Ulyana M. Matveyenka,Valery G. Smotrakov,Dmitry A. Kiselev,Yury N. Parkhomenko
出处
期刊:Journal of vacuum science & technology [American Institute of Physics]
卷期号:44 (1) 被引量:1
标识
DOI:10.1116/6.0004936
摘要

The interpretation of core-level binding energy (BE) chemical shifts measured by XPS can be complex and sometimes incorrect, since theу are often contributed to multiple mechanisms. This work deals with K 2p BE shifts on the basis of experimental data on a PHI5000 VersaProbeII spectrometer and theoretical calculations of binding energies for the core-K 2p level using the Δ Self-Consistent Field method. The experimental samples were KNbO3 cleaves and wafers before and after irradiation with atom and cluster beams of argon ions, as well as potassium hydrocarbonate and carbonate powders. Furthermore, our earlier data on KNN ceramics containing the K6Nb10.8O30 phase were used. The first-principle theoretical calculations were carried out for the KNbO3, K6Nb11O30, K2CO3, K2O, and KOH potassium compounds. We show that all the theoretically calculated and experimentally studied shifts have negative values. A good agreement between the calculated and measured shifts was obtained. The greatest negative shifts relative to the metallic potassium (−3.1 eV) were obtained for KNbO3 single crystals and KNN ceramics. Irradiation of KNbO3 with argon ions and clusters yielded additional spectra in the region of smaller shifts. The K 2p BE shifts of the other tested potassium compounds are in a broad region from −1.5 to −2.1 eV, and therefore additional features should be used for their correct interpretation.
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