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Color Centers in BaFBr Crystals: Experimental Study and Theoretical Modeling.

Talgat M InerbaevAbdirash T AkilbekovDaurzhan KenbayevAlma DauletbekovaAlexey ShalaevElena PolisadovaMarina KonuhovaSergei PiskunovAnatoli I Popov
Published in: Materials (Basel, Switzerland) (2024)
This study presents theoretical and experimental investigations into the electron and hole color centers in BaFBr crystals, characterizing their electronic and optical properties. Stoichiometric BaFBr crystals grown by the Steber method were used in the experiments. Radiation defects in BaFBr crystals were created by irradiation with 147 MeV 84 Kr ions with up to fluences of 10 10 -10 14 ions/cm 2 . The formation of electron color centers (F(F - ), F 2 (F - ), F 2 (Br - )) and hole aggregates was experimentally established by optical absorption spectroscopy. Performed measurements are compared with theoretical calculations. It allows us to determine the electron transition mechanisms and investigate the processes involved in photoluminescence emission in Eu-doped BaFBr materials to enhance the understanding of the fundamental electronic structure and properties of electron and hole color centers formed in BaFBr crystals.
Keyphrases
  • solar cells
  • quantum dots
  • room temperature
  • high resolution
  • perovskite solar cells
  • electron microscopy
  • density functional theory
  • molecular dynamics
  • highly efficient
  • water soluble