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The luminescence of Mn4+ in K2GeF6

  • A. M. Srivastava*
  • , W. W. Beers
  • , M. G. Brik
  • , A. Suchocki
  • , D. Włodarczyk
  • , C. G. Ma
  • , M. S. Kurboniyon
  • , W. E. Cohen
  • *Corresponding author for this work
  • Current Chemicals
  • Chongqing University of Posts and Telecommunications
  • University of Belgrade
  • University of Tartu
  • Jan Dlugosz University in Czestochowa
  • Academy of Romanian Scientists
  • Institute of Physics of the Polish Academy of Sciences
  • Academy of Sciences of the Republic of Tadzhikistan

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)

Abstract

In this work, we report on the spectroscopic properties of Mn4+ in the fluoride host, K2GeF6. The Mn4+ luminescence intensity and lifetime are measured as a function of temperature. From the data, we have determined the onset temperature and activation energy for thermal quenching of luminescence. The optical properties and thermal quenching behavior of Mn4+ in K2GeF6 are compared with those reported for commercial Na2SiF6:Mn4+ and K2SiF6:Mn4+ (TriGain®) phosphors. This comparative study sheds light on the mechanism of thermal quenching of the Mn4+ ion luminescence in the A2XF6 (A = K, Na; X = Si, Ge) family of materials. We provide evidence that the activation energy and the onset temperature of thermal quenching for the 2E→ 4T24A2 crossover process is correlated with the energy of the 4T2 level and argue that this is a robust electronic structure-property relationship in host fluorides with low defect density. The K2GeF6 is reported to undergo structural phase transitions in the temperature ranges of 220–240 K and 150–170 K. We have probed the phase transitions by temperature dependent Raman spectroscopy. The evidence for structural phase transition in our Raman experiments is lacking.

Original languageEnglish
Article number116797
JournalOptical Materials
Volume161
DOIs
Publication statusPublished - Apr 2025
Externally publishedYes

Keywords

  • KGeF
  • Mn
  • Optical properties
  • Phase transition
  • Raman spectroscopy
  • Thermal quenching

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