4.6 Article

A novel single-phase white light emitting phosphor Ca9La(PO4)5(SiO4)F2:Dy3+: synthesis, crystal structure and luminescence properties

Journal

RSC ADVANCES
Volume 6, Issue 29, Pages 24577-24583

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5ra23348h

Keywords

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Funding

  1. National Natural Science Foundations of China [41172053]
  2. Fundamental Research Funds for the Central Universities [2652013043]
  3. Science and Technology Innovation Fund of the China University of Geosciences (Beijing)

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A novel single-phase white light emitting phosphor Ca9La(PO4)(5)(SiO4)F-2:Dy3+ was prepared through traditional high-temperature solid state technology. The crystal structures of Ca9La(PO4)(5)(SiO4)F-2 with or without Dy3+ ions were refined by the Rietveld method. The diffuse reflection spectra, excitation spectra, emission spectra, and decay times were characterized to investigate the photoluminescence properties for application in white light-emitting diodes. The results showed that the Ca9La(PO4)(5)(SiO4)F-2:Dy3+ phosphor could efficiently assimilate n-UV light and emit blue (similar to 485 nm) and yellow light (similar to 580 nm), originating from the f-f transitions of Dy3+. The critical Dy3+ quenching concentration (QC) was determined to be about 15 mol%, and the corresponding QC mechanism was verified to be the dipole-dipole interaction. Additionally, the emission colors of all samples were located close to the ideal white light region, and the optimal chromaticity coordinates and correlated color temperature (CCT) were determined to be (x = 0.338, y = 0.336) and 5262 K. All the above results indicate that the as-prepared Ca9La(PO4)(5)(SiO4)F-2:Dy3+ phosphor could serve as a promising candidate for white-light n-UV-LEDs.

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