Luminescence characteristics of Ce3+doped multicomponent lithium fluorophosphate glasses

  • Sarumaha, C. S.; 
  • Rajagukguk, J.; 
  • Chanthima, N.; 
  • Kidkhunthod, P.; 
  • Chanlek, N.; 
  • ... Kim, H. J.; 
  • 외 3명
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초록

We have used the melt quenching technique to fabricate glass samples with the composition 20Li2O-10AlF3- 2.5R-(57-x)P2O5-10Gd2O3-0.5CeF3 (R = 0, NaF, KF). These glasses were synthesized and their density, molar volume, refractive index, FTIR (Fourier-transform infrared spectroscopy) spectra, transmittance spectra, decay time analysis, and photo and radioluminescence properties were reported. Surface-sensitive techniques such as X-ray photoelectron spectroscopy (XPS) and X-ray absorption near edge spectroscopy (XANES) were investi-gated. As a result, the FTIR spectra of these glasses break the Q2 tetrahedral sites of the phosphate structure when adding alkali fluoride. UV emission at-337 nm was observed at-302 nm excitation. In XPS spectra, phosphorus oxidation states (P2p) were detected. The investigation of X-ray Absorption Near-Edge Structure (XANES) of Ce LIII-edge was shown at-5.726 keV and confirmed the presence of Ce3+ and Ce4+ was shown at-5.731 keV and-5.738 keV. The comparison of the Ce3+ and Ce4+ ratios by fitting the energy range in the XANES spectrum may confirm the luminescence characteristic of the glass. A full energy peak was observed in the pulse height spectra of a 241Am alpha-ray irradiation in the PLGdAfKfCe0.5 glass, and the calculated light yields of PLGdAfKfCe0.5 was 49 Ph/MeV under alpha-ray. From the results can be concluded that the PLGdAfKfCe0.5 glass showed promising prop-erties as a scintillator material.

키워드

Fluorophosphate glass; CeF3; XANES; XPS; Luminescence; Scintillation; ENERGY-TRANSFER; SCINTILLATION PROPERTIES; OPTICAL-PROPERTIES; PHOSPHATE-GLASSES; CERIUM; CE3+; FLUORIDE; CERAMICS; XPS
제목
Luminescence characteristics of Ce3+doped multicomponent lithium fluorophosphate glasses
저자
Sarumaha, C. S.; Rajagukguk, J.; Chanthima, N.; Kidkhunthod, P.; Chanlek, N.; Kantuptim, P.; Yanagida, T.; Kim, H. J.; Kaewkhao, J.
DOI
10.1016/j.radphyschem.2023.110814
발행일
2023-06
유형
Article
저널명
Radiation Physics and Chemistry
권
207