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Hexagonal Sr1-: X /2Al2- x Six O4:Eu2+,Dy3+transparent ceramics with tuneable persistent luminescence properties

  • Victor Castaing*
  • , Charlotte Monteiro
  • , Atul D. Sontakke
  • , Kazuki Asami
  • , Jian Xu
  • , Alberto J. Fernández-Carrión
  • , Mikhail G. Brik
  • , Setsuhisa Tanabe
  • , Mathieu Allix
  • , Bruno Viana*
  • *Corresponding author for this work
  • Institut de Recherche de Chimie Paris
  • Université d'Orléans
  • Utrecht University
  • Kyoto University
  • Guilin University of Technology
  • University of Tartu

Research output: Contribution to journalArticlepeer-review

27 Citations (Scopus)

Abstract

Co-doped hexagonal Sr1-x/2Al2-xSixO4:Eu2+,Dy3+ (0.1 ≤ x ≤ 0.5) transparent ceramics have been elaborated by full glass crystallization. The compositions with low SiO2 content (x ≤ 0.4) require fast quenching conditions to form glass, i.e. specific elaboration processes such as aerodynamic levitation coupled to laser heating, whereas the x = 0.5 glass composition can be prepared on a large scale by the classic melt-quenching method in commercial furnaces. After a single thermal treatment, the resulting SrAl2O4-based transparent ceramics show varying photoluminescence emission properties when x increases. These variations are also observable in persistent luminescence, resulting in an afterglow colour-tuning ranging from green to light blue. Afterglow excitation spectra highlight the possible activation in the visible range of the obtained persistent luminescence. Indeed, persistent luminescence of hexagonal Sr0.75Al1.5Si0.5O4:Eu2+,Dy3+ large transparent ceramics has been successfully charged using a typical smartphone low power white light source. Moreover, thermoluminescence glow curves of samples containing different Dy3+ doping concentrations are studied to gain insights regarding the traps' origin and depth. Coupling thermoluminescence results together with luminescence thermal quenching and band gap calculations appear useful to understand the charge trapping and detrapping evolution with the material composition.

Original languageEnglish
Pages (from-to)16849-16859
Number of pages11
JournalDalton Transactions
Volume49
Issue number46
DOIs
Publication statusPublished - 14 Dec 2020
Externally publishedYes

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