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Study of the effect of doping CeO2 in TeO2–MoO–Bi2O3 ceramics on the phase composition, optical properties and shielding efficiency of gamma radiation.

Authors :
Temir, A.
Zhumadilov, K. Sh
Zdorovets, М.V.
Kozlovskiy, A.
Trukhanov, A.V.
Source :
Optical Materials. May2021, Vol. 115, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

This paper presents data on the study of changes in the structural, optical, and gamma radiation shielding characteristics of TeO 2 –MoO–Bi 2 O 3 ceramics doped with СеО 2. Doping was carried out by adding CeO 2 powder to the composition of ceramics during mixing in the following molar proportions of 0.05, 0.10, 0.15, 0.20, and 0.25 mol %. Using the method of X-ray phase analysis, the dynamics of phase transitions was established: Bi 6 Te 2 O 13 /Bi 4 MoO 9 → Bi 4 MoO 9 /CeTe 2 O 6. It was found that an increase in the concentration of the dopant leads to a change in the content of the phases, followed by the equilibration of the Bi 4 MoO 9 and CeTe 2 O 6 phases at a dopant concentration of 0.20 and the dominance of the CeTe 2 O 6 phase at a concentration of 0.25. During the determination of optical characteristics, it was found that doping leads to sharp change in the fundamental absorption edge and a decrease in the E g value from 2.27 eV to 1.87 eV, as well as the appearance of two absorption bands with energies of 1.72 eV and 2.39 eV. During the determination of gamma radiation shielding characteristics, it was found that an increase in the concentration of CeO 2 leads to an increase in gamma radiation shielding efficiency exceeding 50% for dopant concentrations above 0.15 M in the composition of ceramics. • Shielding characteristics of TeO 2 –MoO–Bi 2 O 3 ceramics doped with СеО 2. • Doping with CeO 2 oxide leads not only to an increase in the degree of crystallinity and density of ceramics. • The dependence of the change in the band gap and the density of dislocations in ceramics. • Radiation protection efficiency versus dopant concentration. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09253467
Volume :
115
Database :
Academic Search Index
Journal :
Optical Materials
Publication Type :
Academic Journal
Accession number :
150291978
Full Text :
https://doi.org/10.1016/j.optmat.2021.111037