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Bi-based double perovskites(Formula presented)and(Formula presented): Candidate materials for p-type transparent conducting applications with wide/ultra-wide band gaps

  • Sara Rahman
  • , Xuan Li
  • , Man Wang
  • , Kequan Wu
  • , Honggang Ye
  • , Yelong Wu
  • School of Physics
  • Universities of Shaanxi Province

Research output: Contribution to journalLetterpeer-review

Abstract

Developing high-performance p-type transparent conducting oxides (TCOs) is challenging due to large hole effective masses and limited mobility in oxides. Using first-principles density functional theory calculations, we show Bi-based double perovskites Ba2NbBiO6 and Ba2TaBiO6 are promising candidate materials for p-type transparent semiconductors. Ba2NbBiO6 possesses a wide band gap (WBG) while Ba2TaBiO6 has an ultra-wide band gap (UWBG). Strong Bi-6s/O-2p hybridization at the valence band maximum enhances dispersion, yielding low hole effective masses (0.34–0.39 m0 (PBE), 0.46–1.1 m0 (HSE06)). Both exhibit WBG to UWBG (2.04–2.59 eV (PBE), 3.08–3.68 eV (HSE06)), suppressing visible-light absorption. Idealized 30 nm thin films show high visible transparency, meeting fundamental optical requirements for TCO materials. Favorable electronic/optical properties are complemented by mechanical ductility (Pugh ratios above the threshold) and indications of structural stability with moderate Young's moduli, suggesting potential compatibility with thin-film deposition. Our results identify these perovskites as promising candidate systems for next-generation p-type wide- to ultra-wide-band-gap transparent conductors, highlighting Bi-based double-perovskite engineering for exploring high-transparency, mechanically stable p-type oxides.

Original languageEnglish
Article number46001
JournalEPL
Volume155
Issue number4
DOIs
StatePublished - Aug 2026
Externally publishedYes

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