The electronic and optical properties of Cs2BX6 (B = Zr, Hf) perovskites with first-principle method

PLoS One. 2023 Dec 22;18(12):e0292399. doi: 10.1371/journal.pone.0292399. eCollection 2023.

Abstract

The electronic structures and absorption properties of Cs2BX6 halide compounds are investigated with first principle calculation and exchange correlation functional of GGA-PBE. Pressure and halogen ion doping are employed to regulate band gap. All materials suffer transition from indirect to direct band gap semiconductors but with different phase transition pressure. Structural and band structure calculating results show that the value of phase transition pressure is mainly determined by the volume of octahedron. When the volume of vacancy octahedron is much less than B-ion octahedron, the lowest band point of B-d orbitals transforms to Γ point, then the indirect semiconductors transform into direct band gap semiconductors. Calculating results of optical absorption implied that the systems have obvious blue shift, which result in the optical properties reduced. Based on suitable band gap and higher absorption coefficient, Cs2ZrI4Br2 can be an ideal candidate for perovskites solar cells.

MeSH terms

  • Calcium Compounds*
  • Electronics*
  • Gamma Rays
  • Halogens

Substances

  • perovskite
  • Calcium Compounds
  • Halogens

Grants and funding

The work was supported by the Fundamental Research Funds for Technical Study of Ministry of Public Security with Grant No.2021JSYJC23; Scientific Research Project, Department of Education of Liaoning province, No.LJKZ0075; The Key Project Research of the Central Universities of Criminal Investigation Police University of China with Grant NO.D2021009; Fundamental Research Funds for the Central Universities of Criminal Investigation Police University of China, under Grant No.D2019018 These organizations only provide fund support. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.