Optical parameters and shielding attitude of sodium fluoride in calcium-borate glasses

被引:0
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作者
E. Khalil [1 ]
G. El-Damrawi [2 ]
A. M. Abdelghany [2 ]
R. M. Ramadan [1 ]
Y. M. Moustafa [3 ]
机构
[1] Faculty of Applied Health Sciences Technology,Department of Basic Sciences
[2] Horus University,Glass Research Group
[3] New Damietta,Spectroscopy Department
[4] Costal Road,Microwave Physics and Dielectrics Department
[5] Physics Department,undefined
[6] Faculty of Science,undefined
[7] Mansoura University,undefined
[8] Physics Research Institute,undefined
[9] National Research Centre,undefined
[10] Physics Research Institute,undefined
[11] National Research Centre,undefined
关键词
Fluoroborate glasses; Shielding glasses; UV/Vis; Refractive index; Molar refractivity; Metallization; Urbach energy;
D O I
10.1007/s11082-024-07955-7
中图分类号
学科分类号
摘要
Borate glasses with compositions xCaO-(30-x)NaF-70B2O3 (x = 0–30 mol%, step 5) were synthesized and characterized to investigate the effects of partially substituting NaF with CaO on radiation shielding ability and optical properties. Density, molar volume, packing density, and free volume were measured and calculated. UV–visible spectroscopy was utilized to determine the optical bandgap and other correlated physical parameters. Moreover, different shielding parameters were evaluated using Phy-X simulation software. From data analyses, it was found that increasing CaO content transformed BO3 to BO4 structural units in the borate glass network, keeping the optical bandgap values between 3.76 and 3.55 eV. In addition, the refractive index varied from 2.32 to 2.4, while molar refractivity and Urbach energy were slightly increased with composition. Moreover, the replacement of NaF by CaO enhanced photon interaction cross-sections, reducing the mean free path and half-value layer. The work demonstrated that controlled additions of an intermediate oxide like CaO can tailor the radiation shielding and optical characteristics of borate glasses for potential applications as transparent radiation shielding materials.
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