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First-principles calculation of core-level binding energy shift in surface chemical processes 被引量:1

First-principles calculation of core-level binding energy shift in surface chemical processes
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摘要 Combined with third generation synchrotron radiation light sources, X-ray photoelectron spectroscopy (XPS) with higher energy resolution, brilliance, enhanced surface sensitivity and photoemission cross section in real time found extensive applications in solid-gas interface chemistry. This paper reports the calculation of the core-level binding energy shifts (CLS) using the first-principles density functional theory. The interplay between the CLS calculations and XPS measurements to uncover the structures, adsorption sites and chemical reactions in complex surface chemical processes are highlight. Its application on clean low index (111) and vicinal transition metal surfaces, molecular adsorption in terms of sites and configuration, and reaction kinetics are domonstrated. Combined with third generation synchrotron radiation light sources, X-ray photoelectron spectroscopy (XPS) with higher energy resolution, brilliance, enhanced surface sensitivity and photoemission cross section in real time found extensive applications in solid-gas interface chemistry. This paper reports the calculation of the core-level binding energy shifts (CLS) using the first-principles density functional theory. The interplay between the CLS calculations and XPS measurements to uncover the structures, adsorption sites and chemical reactions in complex surface chemical processes are highlight. Its application on clean low index (111) and vicinal transition metal surfaces, molecular adsorption in terms of sites and configuration, and reaction kinetics are domonstrated.
出处 《Science China Chemistry》 SCIE EI CAS 2010年第2期402-410,共9页 中国科学(化学英文版)
基金 the financial support from the National Natural Sci-ence Foundation of China (Grant Nos. 20733008, 20873142) the National Basic Research Program of China (2007CB815205)
关键词 first principles core-level binding energy shift surface chemical processes first principles core-level binding energy shift surface chemical processes
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