he glass series of samarium nanoparticles (NPs) doped zinc borotellurite glasses were successfully fabricated by using conventional melt-quenching technique. The structural properties of the prepared glasses were investigated by X-ray diffraction (XRD) analysis and FTIR analysis. It was confirmed that the prepared glasses are amorphous in nature. The bonding parameters of the glasses were analyzed by using FTIR analysis and were found the formation of non-bridging oxygen. The density of these glasses were measured and found to be increased with increasing samarium NPs content. The optical absorption spectra of these glasses were revealed that the fundamental absorption edge shifts to higher wavelengths as the content of Sm2O3 (NPs) increase...
Enhancing the optical performance of rare earth doped binary inorganic glasses is an everdemanding q...
A series of nickel oxide (NiO) nanoparticles (NPs) embedded samarium (Sm3+) doped zinc phosphate gla...
A glass series with chemical composition of {[(TeO2)0.7(B2O3)0.3]0.7(ZnO)0.3}1-x (La NPs)x where x =...
The glass series of samarium nanoparticles (NPs) doped zinc borotellurite glasses were successfully ...
Tellurite glasses are very promising materials for laser and non-linear applications in optics, due ...
A series of glasses with composition (70-x)TeO2 + 20B2O3 + 10ZnO + xSm2O3, where 0.0 ≤ x ≤ 2.5 mol %...
Four series of zinc tellurite glasses doped with samarium, samarium nanoparticles and silver oxide w...
Glasses with chemical compositional {[(TeO2)0.7(B2O3)0.3}]0.7 [ZnO]0.3}1_x {Sm2O3}x, (where x=0, 0.0...
Rare-earth oxides microparticles doped tellurite-based glass have been studied extensively to improv...
Erbium nanoparticles (NPs) doped zinc borotellurite glasses have been prepared by conventional melt-...
Glasses with chemical composition {[(TeO₂)0.7 (B₂O₃)0.3]0.8 [SiO₂]0.2}1-x {Sm₂O₃ NPs}x where x = 0.0...
We report on the optical efficiency of samarium nanoparticles (NPs) doped tellurite glasses experime...
The glass samples of zinc borotellurite glass doped with dysprosium nanoparticles with chemical form...
Erbium nanoparticles (NPs) doped zinc borotellurite glasses have been prepared by conventional melt-...
Enhanced absorption and emission cross-sections of rare earth doped binary glasses are highly demand...
Enhancing the optical performance of rare earth doped binary inorganic glasses is an everdemanding q...
A series of nickel oxide (NiO) nanoparticles (NPs) embedded samarium (Sm3+) doped zinc phosphate gla...
A glass series with chemical composition of {[(TeO2)0.7(B2O3)0.3]0.7(ZnO)0.3}1-x (La NPs)x where x =...
The glass series of samarium nanoparticles (NPs) doped zinc borotellurite glasses were successfully ...
Tellurite glasses are very promising materials for laser and non-linear applications in optics, due ...
A series of glasses with composition (70-x)TeO2 + 20B2O3 + 10ZnO + xSm2O3, where 0.0 ≤ x ≤ 2.5 mol %...
Four series of zinc tellurite glasses doped with samarium, samarium nanoparticles and silver oxide w...
Glasses with chemical compositional {[(TeO2)0.7(B2O3)0.3}]0.7 [ZnO]0.3}1_x {Sm2O3}x, (where x=0, 0.0...
Rare-earth oxides microparticles doped tellurite-based glass have been studied extensively to improv...
Erbium nanoparticles (NPs) doped zinc borotellurite glasses have been prepared by conventional melt-...
Glasses with chemical composition {[(TeO₂)0.7 (B₂O₃)0.3]0.8 [SiO₂]0.2}1-x {Sm₂O₃ NPs}x where x = 0.0...
We report on the optical efficiency of samarium nanoparticles (NPs) doped tellurite glasses experime...
The glass samples of zinc borotellurite glass doped with dysprosium nanoparticles with chemical form...
Erbium nanoparticles (NPs) doped zinc borotellurite glasses have been prepared by conventional melt-...
Enhanced absorption and emission cross-sections of rare earth doped binary glasses are highly demand...
Enhancing the optical performance of rare earth doped binary inorganic glasses is an everdemanding q...
A series of nickel oxide (NiO) nanoparticles (NPs) embedded samarium (Sm3+) doped zinc phosphate gla...
A glass series with chemical composition of {[(TeO2)0.7(B2O3)0.3]0.7(ZnO)0.3}1-x (La NPs)x where x =...