2022
DOI: 10.3390/ma15155393
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Investigation of Structural, Physical, and Attenuation Parameters of Glass: TeO2-Bi2O3-B2O3-TiO2-RE2O3 (RE: La, Ce, Sm, Er, and Yb), and Applications Thereof

Abstract: A novel series of glass, consisting of B2O3, Bi2O3, TeO2, and TiO2 (BBTT) containing rare earth oxide RE2O3, where RE is La, Ce, Sm, Er, and Yb, was prepared. We investigated the structural, optical, and gamma attenuation properties of the resultant glass. The optical energy bands, the linear refractive indices, the molar refractions, the metallization criteria, and the optical basicity were all determined for the prepared glass. Furthermore, physical parameters such as the density, the molar volume, the oxyge… Show more

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Cited by 11 publications
(7 citation statements)
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“…Symmetrical or bending vibrations of Teeq-Oax-Te connections at corner sharing sites in TeO 4 [40,45] account for the band designated (D) at 453-503 cm −1 . Anti-symmetrical stretching of the continuous TeO 4 tbps network is responsible for the (E) band seen between 609 and 658 cm −1 [2,42]. The (F) band at 757-854 cm −1 is due to Te-O and Te=O bond stretching vibrations in non-bridging oxygen in TeO 3 tps and TeO 3+1 polyhedra or Te 2 O 7 bridged tetrahedra (Te-O-Te antisymmetric stretch) [40,42].…”
Section: Raman Spectramentioning
confidence: 97%
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“…Symmetrical or bending vibrations of Teeq-Oax-Te connections at corner sharing sites in TeO 4 [40,45] account for the band designated (D) at 453-503 cm −1 . Anti-symmetrical stretching of the continuous TeO 4 tbps network is responsible for the (E) band seen between 609 and 658 cm −1 [2,42]. The (F) band at 757-854 cm −1 is due to Te-O and Te=O bond stretching vibrations in non-bridging oxygen in TeO 3 tps and TeO 3+1 polyhedra or Te 2 O 7 bridged tetrahedra (Te-O-Te antisymmetric stretch) [40,42].…”
Section: Raman Spectramentioning
confidence: 97%
“…From 45.86 cm 3 /mol, V O decreased to 45.74 cm 3 /mol. In addition, it is possible that the reduction in V O reflected an increase in the synthesis of NBO atoms, given that the OPD was determined using Equation ( 4) [2].…”
Section: Physical Optical Propertiesmentioning
confidence: 99%
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“…The μ values for the fabricated glasses were closed to sample CY0 with μ values of 2.831 cm −1 [46], as illustrated in figure 13. On the other hand, the fabricated glasses' μ values are lower than the previously reported borate reinforced rare earth compounds CY1 (μ = 3.1344 cm −1 ), CY2 (μ = 3.4162 cm −1 ), CY3 (μ = 3.6218 cm −1 ), CY4 (μ = 3.9043 cm −1 ), CY5 (μ = 4.0995 cm −1 ), CY6 (μ = 4.3999 cm −1 ), CY7 (4.6587 cm −1 ), TeBYb1 (μ = 3.08 cm −1 ), TeBYb5 (μ = 4.46 cm −1 ), BBTTLa (μ = 5.67 cm −1 ), BBTTCe (μ = 6.083 cm −1 ), BBTTSm (μ = 6.17 cm −1 ), BBTTEr (μ = 6.21 cm −1 ), and BBTTYb (μ = 6.31 cm −1 ) [46][47][48]. The high μ values for the selected previously reported glass samples are attributed to the high contents of TeO 2 and Bi 2 O 3 concentrations in the selected samples.…”
Section: Gamma-ray Shielding Propertiesmentioning
confidence: 99%
“…The incorporation of 0.03 mol% Au NPs increases the band gap from 3.185 eV to 3.197 eV (for direct band gap) and from 3.049 eV to 3.069 eV (for indirect band gap), respectively. The increase in the band gap signifies a reduction in the number of NBO or more BO being present [25]. However, further addition of Au NPs with a concentration of 0.05 mol% to 0.20 mol% shows a gradual decrement in the direct and indirect band gap signifies the increasing number of NBO.…”
Section: Optical Bandgap and Urbach Energymentioning
confidence: 99%