带隙
材料科学
原子轨道
从头算
价(化学)
铈
电子结构
分子轨道
氧化物
直接和间接带隙
吸收光谱法
原子物理学
分子物理学
电子
凝聚态物理
物理
光电子学
光学
分子
冶金
量子力学
标识
DOI:10.1142/s0217984923501555
摘要
In this paper, the structural, electronic, optical, and mechanical properties of the hexagonal Ceria CeO 2 have been studied with hybrid functionals. The rare-earth oxide compound exhibits a [Formula: see text] indirect bandgap, with a bandgap energy of 2.706 eV. The electronic bandstructure has been described in detail in terms of orbital states. The rare-earth Ce f orbital contributes to the conduction band and transitional Ce d, O s electron orbitals to the valence bands. Our optical spectra also fully explain the structural and electronic properties of the material. (i.e. atomic-bonding, density or capacity inside Cerium oxide system, and the excitation of electrons to transfer from valence O 2p to conduction Ce f orbitals, leading to orbital hybridizations, etc.). Finally, our elastic coefficients verify the mechanical stability of our Ceria system. Our bandgap energy found is in excellent agreement with the experimental data. A high optical absorption coefficient of up to [Formula: see text] cm[Formula: see text] is found, indicating a good material absorption within the ultraviolet C (UVC) range. The findings of this work would be beneficial to both theoretical and experimental research works to explore the potential applications of CeO 2 in optoelectronics devices.
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