or oxygen vacancies. Zinc shows only a small binding energy shift in the Zn2p3/2 region (1021eV - 1023eV, modal value). Peak width may broaden in the presence of more than one Zn species. Zn2p peaks often accompanied by Auger peak at Kinetic Energy ~990eV. If zinc is buried ...
Peaks have asymmetric peak shape for metal. Loss features are observed to higher binding energy side of 3d3/2 spin-orbit component for In metal. In3d peaks may also show asymmetry for indium oxide, if other compounds are present (e.g. hydroxide) or there are vacancies/defects in...
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or oxygen vacancies. Zinc shows only a small binding energy shift in the Zn2p3/2 region (1021eV-1023e, modal value). Peak width may broaden in the presence of more than one Zn species. Zn2p peaks often accompanied by Auger peak at Kinetic Energy ≈990eV. If zinc is burie...
Interpretation of XPS spectra Zn2p peak has significantly split spin-orbit components (Δmetal=23eV). ZnO has an unusual O1s spectrum with two peaks, possibly indicating either Zn(OH)2, ZnCO3, or oxygen vacancies. Zinc shows only a small binding energy shift in the Zn2p3/2 region (...
The oxygen vacancies on the surface of the oxide will be subsequently filled by the O2 present in the gas phase. This mechanism was boosted up with the photothermo-catalytic approach because the photocatalytic mechanism generated the superoxide (O2•−) and hydroxyl (OH•) radicals [43,...
The oxygen vacancies on the surface of the oxide will be subsequently filled by the O2 present in the gas phase. This mechanism was boosted up with the photothermo-catalytic approach because the photocatalytic mechanism generated the superoxide (O2•−) and hydroxyl (OH•) radicals [43,...