4.6 Article

Enhanced thermoluminescence intensity, stability, and sensitivity of the Yb3+doped BaO-ZnO-LiF-B2O3 glass by Sm3+co-doping

期刊

MATERIALS CHEMISTRY AND PHYSICS
卷 271, 期 -, 页码 -

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ELSEVIER SCIENCE SA
DOI: 10.1016/j.matchemphys.2021.124906

关键词

Thermoluminescence; Optical materials; Glass; Co-doping

资金

  1. Deanship of Scientific Research at Princess Nourah bint Abdulrahman University through the Fast-track Research Funding Program

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The study reported the enhancement of Thermoluminescence (TL) properties in a novel Yb3+ doped glass host by Sm3+ co-doping. The results showed that co-doping significantly improved TL counts, stability, and sensitivity, indicating potential applications in various fields.
We report for the first time the Thermoluminescence (TL) enhancement of intensity, stability, and sensitivity of a novel Yb3+ doped BaO-ZnO-LiF-B2O3 glass host by Sm3+ co-doping. The optimum co-doping of Sm3+ ions to the Yb3+ optimum doped glass intensified the TL counts by 6 times and that of the undoped glass by 157 times. This was reasoned to the increment in the trap density. The kinetic parameters signified the restructuring role of Sm3+ ions by creating deeper traps with higher lifetimes and activation energies. This was beneficial in enhancing the stability of the Yb3+ doped glass by minimizing the thermal fading after a week from 42% to 10%. The co-doping also enhanced the sensitivity and lowered the threshold dose. The results present the perspective of Sm3+ ions as TL activators. The TL dosimeter characteristics of the co-doped glass were favorable for its potential application in gamma-environment (0.25-1 kGy) and food irradiation.

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