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The effect of divalent ions on chemical stability of eco-friendly α, γ and δ phases of CsSnI3

  • Zafari Umar
  • , Oleg Khyzhun*
  • , Dilshod D. Nematov
  • , Amondulloi S. Burhonzoda
  • , Mikhail G. Brik
  • , Tomoyuki Yamamoto
  • , Michał Piasecki*
  • *Corresponding author for this work
  • Jan Dlugosz University in Czestochowa
  • Tajik State Pedagogical University named after S. Aini
  • Academy of Sciences of the Republic of Tadzhikistan
  • NASU - Institute for Problems of Materials Science
  • S.U. Umarov Physical-Technical Institute of NAST
  • Chongqing University of Posts and Telecommunications
  • University of Belgrade
  • University of Tartu
  • Academy of Romanian Scientists
  • Waseda University

Research output: Contribution to journalArticlepeer-review

2 Citations (Scopus)

Abstract

In the present work, based on possibilities of density functional theory (DFT), we explore the ability of cesium tin triiodide to incorporate divalent ions (Mg2+, Ni2+, Zn2+, and Cd2+) depending on its crystal structure (α, γ and δ phases of CsSnI3). The total energies of the α-, γ- and δ-phases of CsSnI3 alloyed with the divalent ions are found to be negative and they do not alter essentially when changing the phase. Calculations of the formation energies indicate that, independently of the phase of CsSnI3, the incorporating abilities for the divalent ions increases in the sequence Cd2+ → Mg2+ → Zn2+ → Ni2+. Therefore, incorporation of such divalent ions favors the chemical stability of CsSnI3 that is very important for practical application of this iodide. We do not detect significant changes in densities of states in the sequence α-CsSnI3 → γ-CsSnI3 → δ-CsSnI3. The Cs–I and Sn–I bonds in the α-, γ- and δ-phases of CsSnI3 reveal the existence of a substantial covalent component (in addition to ionic component) of the chemical bonding. The electronic states associated with the embedding divalent ions form additional electronic states in the energy band gaps of the α-, γ- and δ-phases of CsSnI3. Such additional electronic states associated with the divalent ions cause essential decreasing the Eg values of the α-, γ- and δ-phases of CsSnI3 leading in some cases to metallic behavior of α-CsSnI3. The tendency of increasing chemical stability of the α-, γ- and δ-phases of CsSnI3 with decreasing ionic radius of the embedding divalent ion has been detected.

Original languageEnglish
Article numbere01062
JournalComputational Condensed Matter
Volume44
DOIs
Publication statusPublished - Oct 2025
Externally publishedYes

Keywords

  • Divalent ions
  • Electronic structure
  • First-principles calculations
  • Phosphors
  • Stability

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