Valence-band type Auger lines in Al doped and undoped ZnO were comparatively studied
with the corresponding core level x-ray photoelectron spectrography (XPS) spectra as
references. Then the shift trend of energy levels in the valence band was that p and
p–s–d states move upwards but e and p–d states downwards with increasing Al
concentration. The decreased energy of the Zn 3d state is larger than the increased
energy of the O 2p state, indicating the lowering of total energy. This may indicate
that Al doping could induce the enhancement of p–d coupling in ZnO, which
originates from stronger Al–O hybridization. The shifts of these states and the
mechanism were confirmed by valence band XPS spectra and O K-edge x-ray
absorption spectrography (XAS) spectra. Finally, some previously reported phenomena
are explained based on the Al doping induced enhancement of p–d coupling.
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