Fabrication of Eu2O3 doped in high density and transparent silicoborate scintillating glass for synchrotron X-ray radiographic imaging application

  • Rachniyom, W.; 
  • Intachai, N.; 
  • Kothan, S.; 
  • Wantana, N.; 
  • Sarumaha, C. S.; 
  • ... Kim, H. J.; 
  • 외 8명
Citations

WEB OF SCIENCE

10
Citations

SCOPUS

12

초록

In this work, the glass system, xEu(2)O(3) - 10SrO - 20La(2)O(3) - 10Ta(2)O(5) - 10SiO(2) - (50-x)B2O3, where x = 0, 1, 3, 5, 7, 9, 11 mol%, was fabricated using the high-temperature melt quenching method. The physical, optical, and luminescence properties of the glass were investigated to determine its suitability as a scintillation material. The transparent glass sample showed a high density and molar volume up to 4.72 g/cm(3) and 40.57 cm(3)/mol, respectively, reflecting that higher NBOs in glass matrix. This result is also supported by X-rays photoelectron spectroscopy (XPS) spectra. Absorption spectra represented peaks in the ultraviolet to near infrared regions, which can be confirmed the presenting of Eu3+ ion in glass matrix. Under UV excitation, the glass doped with 3 mol% of Eu2O3 shows highest intensity while scintillation light (X-rays induced luminescence) was highest performed at 7 mol%. The integral intensity of radioluminescence of glass is 26 % that of commercial BGO scintillator. The photoluminescence quantum yield (PLQY) was measured and the highest PLQY was correspond with emission intensity. The glass scintillator was used for X-ray imaging at beamline 1.2, Synchrotron Light Research Institute (SLRI), Thailand and the spatial resolution was evaluated. Due to the strong light emission at 615 nm from D-5(0) -> F-7(2) transition of Eu3+, this developed scintillating glass has a potential for X-ray imaging material in radiographic application.

키워드

Silicoborate glass; Scintillator; Radiographic imaging system; Eu2O3; ENERGY-TRANSFER; LUMINESCENCE; IONS; DETECTORS; EMISSION; STATE
제목
Fabrication of Eu2O3 doped in high density and transparent silicoborate scintillating glass for synchrotron X-ray radiographic imaging application
저자
Rachniyom, W.; Intachai, N.; Kothan, S.; Wantana, N.; Sarumaha, C. S.; Pakawanit, P.; Phoovasawat, C.; Phongsa, A.; Yasaka, P.; Thanyaphirak, W.; Kanjanaboos, P.; Kim, H. J.; Chanlek, N.; Kaewkhao, J.
DOI
10.1016/j.ceramint.2024.12.006
발행일
2025-07
유형
Article
저널명
Ceramics International
권
51
호
16
페이지
22653 ~ 22662