In this investigation, we reported three glass samples of Nd (III) ions doped boro-tellurite-germanite glasses. The chemical composition of (35-x) B 2 O 3 –20TeO 2 -10GeO 2 -35MgO-xNd 2 O 3 where x = 2.5, 5, and 7.5, all in mol%, was used to synthesize an optical glass. XRD, FTIR, and optical absorption were utilized to evaluate the structural and optical properties of Nd2.5, Nd5.0, and Nd7.5. X-ray diffraction was measured in the spectra range of 10–80°. Additionally, spectra of FT-IR in the wavenumber range of 400–4000 cm −1 were reported to investigate all structural groups. Several absorption peaks related to the transitions from ground level 4 I 9/2 to the other excited state were investigated. Various mechanical, optical, and physical properties were calculated theoretically and analyzed to determine the role of the rare earth ions (Nd 3+ ). The optical electronegativity (χ) and optical basicity (Λ) results showed a reduction in the strength of the bond and formed an ionic bond in the glass structure due to adding Nd 2 O 3 . These results align with the reduction in the elastic modulus results by adding Nd 2 O 3 instead of B 2 O 3 . Radiation shielding parameters like HVL, TVL, MFP, and Z eff were thoroughly reported for all Nd2.5, Nd5.0, and Nd7.5, which showed slight improvement when Nd 2 O 3 was added instead of B 2 O 3 .
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Mhareb et al. (2024) studied this question.
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