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Significantly conquering moisture-induced luminescence quenching of red line-emitting phosphor Rb 2 SnF 6 :Mn 4+ through H 2 C 2 O 4 triggered particle surface reduction for blue converted warm white light-emitting diodes

  • Chunyan Jiang
  • , Mikhail G. Brik
  • , Alok M. Srivastava
  • , Lihua Li
  • , Mingying Peng*
  • *Corresponding author for this work
  • South China University of Technology
  • Chongqing University of Posts and Telecommunications
  • University of Tartu
  • Jan Dlugosz University in Czestochowa
  • General Electric
  • Wuyi University

Research output: Contribution to journalArticlepeer-review

81 Citations (Scopus)

Abstract

Mn 4+ doped fluoride phosphors have attracted tremendous attention in the solid-state lighting field due to the outstanding feature of efficient narrow band red emission. However, poor resistance against moisture-induced luminescence quenching is a recognized obstacle for realizing their wider commercial use. Herein, we design and fabricate a highly stable red phosphor based on previously unnoticed Rb 2 SnF 6 :Mn 4+ , which, estimated by the single crystal X-ray diffraction data, crystallizes in the trigonal space group P3m1 with the lattice parameters a = b = 6.0323(12) Å, c = 4.7880(8) Å, and V = 150.89(7) Å 3 . The Rb 2 SnF 6 :Mn 4+ as expected exhibits highly efficient red emission upon excitation by UV and blue light. Significantly, the poor water resistance is conquered by constructing a protective deactivated layer with surface reduction of Mn 4+ . A treatment solution with appropriate reducing ability is emphasized to obtain Rb 2 SnF 6 :Mn 4+ with simultaneous high brightness and water resistance. The results show that the low concentration of H 2 C 2 O 4 solution treated Rb 2 SnF 6 :Mn 4+ preserves a bright red-emitting color analogous to its initial color and >95% of its initial emission intensity when immersing in water at room temperature (RT) and in boiling water for 3 h. Lastly, by employing H 2 C 2 O 4 treated Rb 2 SnF 6 :Mn 4+ as a red phosphor, a high quality WLED with a CRI of 90, CCT of 3936 K and luminous efficacy of 106.24 lm W -1 is fabricated. This work not only experimentally fabricates a new efficient and stable Rb 2 SnF 6 :Mn 4+ phosphor that can be used for high performance warm WLEDs but also provides a deep insight into how to well address moisture-induced Mn 4+ luminescence quenching through appropriate reduction of Mn 4+ , opening up new opportunities for future solid-state lighting purposes.

Original languageEnglish
Pages (from-to)247-255
Number of pages9
JournalJournal of Materials Chemistry C
Volume7
Issue number2
DOIs
Publication statusPublished - 2019
Externally publishedYes

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