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Physical, optical and shielding features of Li2O–B2O3–MgO–Er2O3 glasses co-doped of Sm2O3
Physical, optical and shielding features of Li2O–B2O3–MgO–Er2O3 glasses co-doped of Sm2O3
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Physical, optical and shielding features of Li2O–B2O3–MgO–Er2O3 glasses co-doped of Sm2O3
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Physical, optical and shielding features of Li2O–B2O3–MgO–Er2O3 glasses co-doped of Sm2O3
Physical, optical and shielding features of Li2O–B2O3–MgO–Er2O3 glasses co-doped of Sm2O3

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Physical, optical and shielding features of Li2O–B2O3–MgO–Er2O3 glasses co-doped of Sm2O3
Physical, optical and shielding features of Li2O–B2O3–MgO–Er2O3 glasses co-doped of Sm2O3
Journal Article

Physical, optical and shielding features of Li2O–B2O3–MgO–Er2O3 glasses co-doped of Sm2O3

2020
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Overview
The glassy systems acquired much concern for using in diverse implementations. For this cause, different concentrations of samarium oxide co-doped lithium magnesium borate erbium oxide were prepared by the melt-quench technique. Several physical and optical properties of all prepared glass samples were computed. XRD patterns for all prepared samples show the presence of a broad peak and the lack of sharp peaks emphasize the amorphous nature of all prepared glass samples. FTIR confirms the presence of the functional group BO 3 and BO 4 . Ten considerable absorption bands are evident in the UV–Vis–NIR spectra of the S0 glass sample which are attributed to the presence of Er 3+ ions. S1–S4 samples revealed additional six peaks that are attributed to Sm 3+ ions. In addition, photon and neutron shielding features were evaluated for all prepared samples which enhanced by the increment of Sm 3+ contents. In conclusion, the studied glass composition can be useful in several applications such as solid-state laser, telecommunication, and radiation shielding.