A comparative study of microwave assisted and conventional melting techniques to glass properties

  • Wongwan, W.; 
  • Yasaka, P.; 
  • Boonin, K.; 
  • Khondara, S.; 
  • Kim, H. J.; 
  • 외 7명
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14

초록

The present work focuses on the investigation of the properties of 33TeO2: 2 : 30B2O3: 2 O 3 : 30ZnO: 5BaO: 2Eu2O3 2 O 3 glass prepared using microwave and conventional techniques. The prepared glasses were characterized by TGA/DSC analysis, density, refractive index, FTIR, XPS, absorption spectra, photoluminescence, lifetime, quantum efficiency, and X-ray-induced luminescence properties. The photoluminescence of the samples exhibited the strongest luminescence intensity of the Eu3+ 3+ ion at 614 nm (7F2) 7 F 2 ) under 394 nm excitation, resulting in a relatively high photoluminescence quantum yield of 39.64%. The luminescence decay time from the 5 D 0 to 7 F 2 level of glass prepared by the microwave technique is lower than that of a sample prepared by the conventional technique, with a luminescence decay time of 1.269 and 1.425 ms, respectively. X-ray-excited luminescence spectroscopy identified an emission peak at 614 nm in the samples, which can be attributed to 5 D 0-7F2 7 F 2 transitions in the Eu3+ 3+ ion. These high-intensity samples were compared with bismuth germanate oxide (BGO) crystals used in radiation detection applications. From the various results examined, it is clear that the 33TeO2: 2 : 30B2O3: 2 O 3 : 30ZnO: 5BaO: 2Eu2O3 2 O 3 glass prepared using the microwave technique is suitable for use as a scintillation material.

키워드

Glass; Microwave synthesis technique; Tellurite glasses; Luminescence; Europium; OPTICAL-PROPERTIES; LUMINESCENCE CHARACTERISTICS; BORATE GLASSES; UP-CONVERSION; EU3+; LASER; IONS
제목
A comparative study of microwave assisted and conventional melting techniques to glass properties
저자
Wongwan, W.; Yasaka, P.; Boonin, K.; Khondara, S.; Kim, H. J.; Kothan, S.; Chanlek, N.; Kanjanaboos, P.; Phuphathanaphong, N.; Sareein, T.; Sangwaranatee, N.; Kaewkhao, J.
DOI
10.1016/j.radphyschem.2024.112011
발행일
2024-11
유형
Article
저널명
Radiation Physics and Chemistry
권
224