研究目的
To study the structural and electronic properties of CuAlO2, AgAlO2, CuCrO2, and AgCrO2 transparent conducting oxides (TCOs) using ab initio density functional theory-based calculations, focusing on the effects of native defects and dopants on increasing conductivity.
研究成果
The study concludes that the 2H polymorph of XTO may be as stable as the 3R polymorph, with the simple antiferromagnetic configuration being the most suitable for 2H XCO. The PBE+U functional was found to most suitably replicate experimental band gaps and structural properties. Native defects and Mg doping were found to affect the structural and electronic properties, with a growth environment deficient in X and saturated in O potentially increasing conductivity.
研究不足
The study is limited by the computational demands of modeling complex magnetic configurations and the use of simplified models for vacancies and doping. The accuracy of the band gap predictions is also limited by the choice of functional.