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A Probe of Valence and Conduction Band Electronic Structure of Lead Oxide Films for Photodetectors
Author(s) -
Qamar Amir,
Amin Muhammad Ruhul,
Grynko Oleksandr,
Semeniuk Oleksii,
Reznik Alla,
Moewes Alexander
Publication year - 2019
Publication title -
chemphyschem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.016
H-Index - 140
eISSN - 1439-7641
pISSN - 1439-4235
DOI - 10.1002/cphc.201900726
Subject(s) - photodetector , conduction band , materials science , optoelectronics , oxide , valence (chemistry) , valence band , band gap , chemical physics , nanotechnology , chemistry , physics , electron , organic chemistry , quantum mechanics , metallurgy
We investigate how the electronic structure of amorphous lead oxide (a‐PbO) films deposited on ITO substrate is changed after annealing at various temperatures. Both experimental soft X‐ray spectroscopic and density functional theory (DFT) based computational techniques are used to explore the electronic structure of this material. X‐ray emission, resonant X‐ray inelastic scattering, and X‐ray absorption spectroscopic techniques are employed to directly probe the valence and conduction bands. We discover that the films are very stable and remain amorphous when exposed to temperatures below 300 °C. An amorphous‐to‐polycrystalline (α‐PbO phase) transformation occurs during annealing at 400 °C. At 500 °C, an alpha to beta phase change is observed. These structural modifications are accompanied by the band gap value changing from 1.4±0.2 eV to 2.0±0.2 eV upon annealing at 400 °C and to 2.6±0.2 eV upon annealing at 500 °C. A difference between surface and bulk structural properties is found for all samples annealed at 500 °C and above; these samples also exhibit an unexpected suppression of O : 2p density of states (DOS) near the bottom of the conduction band, whereas additional electronic states appear well within the valence band. This study provides a significant step forward to understanding the electronic properties of two polymorphic forms of PbO needed for optimization of this material for use in X‐ray sensors.

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