First-Principles Study of Cs2TlCoX6 (X = I, Br): Structural Stability, Electronic, Elastic, and Optoelectronic Properties
Abstract
Abstract In this study, density functional theory (DFT) is employed to investigate the structural, electronic, and optical properties of the double perovskites Cs2TlCoX6 (X = I, Br). The crystal structures of these materials are optimized to evaluate their structural stability. The electronic properties, including band structure, band gap, and density of states (DOS), are systematically analyzed. Optical properties are also calculated to understand the interaction of these materials with electromagnetic radiation. Furthermore, the effect of hydrostatic pressure ranging from 0 to 8 GPa is examined to explore its influence on the electronic and optical characteristics of Cs2TlCoX6 (X = I, Br). The band gaps are calculated using the HSE06 hybrid functional and are found to be 2.01 eV for Cs2TlCoBr6 and 1.61 eV for Cs2TlCoI6. The obtained results indicate that these double perovskites possess suitable electronic and optical characteristics, suggesting their potential applications in optoelectronic devices, photovoltaic solar cells, and photodetectors.
// Source
Authors: B. Farhadi, M. Beygisangchin, Zh. Peng, F. Shen, J. Lin, M. A. A. Abdulzaher, P. Faramarzi
Institutions: Chiang Mai University, Shaoxing University, Shenzhen Institutes of Advanced Technology, Liverpool John Moores University