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September 17, 2025EPL (Europhysics Letters)8 citations

Pressure-induced charge transfer reversal in Ba-Te compounds

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ZGZhendong GuoJLJianfu LiSYS. Yang

Key Points

  • At 397 GPa, charge transfer reversal occurs, with barium gaining electrons while tellurium loses them.
  • This phenomenon showcases barium's ability to exhibit anionic characteristics under high pressure.
  • First-principles calculations demonstrate significant band shifts and occupation changes in barium and tellurium's electronic states.
  • The findings enhance our understanding of barium's chemical nature amidst high-pressure conditions.

Abstract

Abstract Under high pressure, the inner-shell orbitals and/or electrons of barium (Ba) atoms can be activated, demonstrating electronic properties distinct from those of alkaline earth metals under ambient conditions. This work indicates that Ba’s 5d band can even capture electrons from tellurium (Te) atoms exhibiting anionic characteristics under high pressure using first-principles calculations combined with CALYPSO structure prediction. At 397 GPa, a charge transfer reversal takes place within the compound, with Ba atoms gaining electrons and exhibiting anionic behavior, while Te atoms lose electrons and display cationic characteristics. Further projected density of states (PDOS) analysis reveals that the pressure broadens the Ba’s 5d and Te’s 5p bands significantly, and the 5d band shifts below the Fermi level and becomes partially occupied, while the 5p band moves above the Fermi level, creating unoccupied states. Our findings demonstrate the complex chemical nature of Ba under high-pressure conditions.

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Cite This Study

Guo et al. (2025) studied this question.

synapsesocial.com/papers/68d461b631b076d99fa606c6https://doi.org/10.1209/0295-5075/ae065e
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