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A Strontium Aluminosilicate SrAl2SiO6Offering a Scalable Route to Persistent Luminescent Materials

  • Euan M. Duncan
  • , Victor Castaing
  • , Ana Isabel Becerro
  • , Alberto J. Fernandez-Carrion
  • , Gabriel Lozano
  • , Florence Porcher
  • , Maxence Vigier
  • , Kholoud Al Sagir
  • , Emmanuel Veron
  • , Mathieu Allix
  • , Michael J. Pitcher
  • conventionnée avec l'Université d'Orléans
  • Inst. de Cie. de Mat. de Sevilla C.
  • European Spallation Source (ESS)
  • Lab. Leon Brillouin (CEA-CNRS)

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

4 Citations (Scopus)

Résumé

The substitution of silicon into SrAl2O4is of interest for the development of new persistent luminescence phosphors with complementary excitation and emission wavelengths, especially in the form of transparent ceramics or glass-ceramics by the glass-crystallization approach. Application of this approach to the series Sr1–x/2Al2–xSixO4(0 ≤ x ≤ 1) has previously produced two different solid solutions adopting either the three-dimensional stuffed tridymite structure of SrAl2O4(0 ≤ x ≤ 0.5), or the two-dimensional hexacelsian structure of SrAl2Si2O8(0.8 ≤ x ≤ 1.0), with a compositional gap between 0.5 < x < 0.8. Here, we synthesize a solid solution centered around SrAl2SiO6(x = 0.66), which is accessible in the range 0.60 ≤ x ≤ 0.75 by glass crystallization. The crystal structure of SrAl2SiO6features an aluminosilicate framework that is related topologically to SrAl2O4(stuffed tridymite) and also, more distantly, to SrAl2Si2O8(hexacelsian), representing a stepwise reduction in framework dimensionality across the series. SrAl2SiO6exhibits an unusual pale blue-green persistent luminescence when doped with Eu2+/Dy3+, and can be produced as powders or transparent glass-ceramic disks. The pale afterglow color, transparency and scalability of these materials are complementary to the dominantly green persistent luminescence of SrAl2O4-based powders or single crystals.

langue originaleAnglais
Pages (de - à)9083-9090
Nombre de pages8
journalChemistry of Materials
Volume37
Numéro de publication22
Les DOIs
étatPublié - 25 nov. 2025
Modification externeOui

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