This work aims to propose three glass systems composed of B 2 O 3 -Bi 2 O 3 -Na 2 O-ZnO-La 2 O 3 for potential radiation shielding purposes. These glasses gave the following codes: 14Zn1La, 16Zn2La, and 18Zn3La. The effect of changing ZnO and La 2 O 3 contents on the mechanical, optical, and gamma radiation shielding properties of the glasses was investigated, as the components were selected for their high density. Makishima and Mackenzie's principles determined the mechanical qualities, while the optical properties were determined using the Mott and Davis relation and absorption spectra. There was a slight variation in the mechanical and optical characteristics with the addition of La 2 O 3 and ZnO instead of B 2 O 3 . For 14Zn1La and 18Zn3La, there was a 3.302–3.332 eV increase in energy. Meanwhile, for 14Zn1La and 18Zn3La, the packing density values were in the range of 0.625 to 0.615. The Phy-X program was used to determine the shielding properties, which showed promising results with the replacement of B 2 O 3 by La 2 O 3 and ZnO. Including ZnO and La 2 O 3 improves the glasses' radiation shielding effectiveness, as indicated by the effective atomic number values, which follow the pattern 14Zn1La <16Zn2La <18Zn3La. Ultimately, it can be said that adding La 2 O 3 and ZnO improves the shielding qualities of existing glasses while decreasing the stability of the glass.
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Sayyed et al. (2025) studied this question.
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