Theoretical studies on the structural, electronic and optical properties of BeZnO alloys
Data publikacji: 13 kwi 2021
Zakres stron: 629 - 636
Otrzymano: 15 wrz 2018
Przyjęty: 23 kwi 2019
DOI: https://doi.org/10.2478/msp-2020-0072
Słowa kluczowe
© 2020 D.P. Xiong et al., published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
The structural, electronic and optical properties of BexZn1−xO alloys were studied using the density functional theory and Hubbard-U method. Uo;p = 10.2 eV for O 2p and UZn;d = 1.4 eV for Zn 3d were adopted as the Hubbard U values. For BexZn1−xO alloys, the lattice constants a and c decrease linearly as Be concentration increases, the bandgap increases with a large bowing parameter of 6.95 eV, the formation enthalpies have the maximum value with Be concentration at 0.625, corresponding to the possible Be concentration to form phase separation. These calculations comply well with the experimental and other theoretical results. Furthermore, optical properties, such as dielectric function ∈(ω), reflectivity R(ω), absorption coefficient α(ω), were calculated and discussed for BexZn1−xO alloys with the incident photon energy ranging from 0 eV to 30 eV.