AbstractDi strontium magnesium silicate phosphor doped with specific concentration of Eu2+ (0.5 mol%) and Dy3+ (1.5 mol%) is prepared using solid state reaction technique. Sample was characterized by X-ray diffraction (XRD) and Fourier transforms infrared techniques. Scanning Electron Microscopy was done to see the morphology of prepared sample. Refined lattice parameters and bond lengths were calculated using the refined data. Mechanoluminescence (ML) studies were also done. Sample exhibited fairly good ML properties. ML spectra expressed single peak supports the formation of single emission centre due to transition of Eu2+ ions due to transitions from any of the sublevels of 4f65 d1 configuration to 8S7/2 level of the 4f7 configuration. S...
Sr3EuxAl10-xSiO20 phosphors were prepared by solid state diffusion method. The photoluminescence and...
WOS:000348005400008Rare-earth-doped aluminosilicates of alkaline earth MgAl2Si2O8: Eu3+, Dy3+ and Mg...
Rare-earth-doped aluminosilicates of alkaline earth MgAl2Si2O8: Eu3+, Dy3+ and MgAl2Si2O8: Eu3+, Gd3...
AbstractThe Sr2MgSi2O7:Eu2+, Ce3+ phosphor was prepared by solid state reaction method, boric acid (...
AbstractEuropium doped di-strontium magnesium di-silicate phosphor namely (Sr2MgSi2O7:Eu3+) was prep...
Europium doped di-strontium magnesium di-silicate phosphor namely (Sr2MgSi2O7:Eu3+) was prepared by ...
AbstractThe Ce3+ doped Ba2MgSi2O7 phosphor is synthesized via high temperature solid state reaction ...
The structure of Sr2MgSi2O7 and Sr2MgSi2O7 doped with Eu2+ were presented in this paper. The samples...
The present paper reports the synthesis and characterization, photoluminescence thermoluminescence a...
Sr2MgSi2O7 (SMS): Eu2+ phosphors were prepared by the solid-state reaction and heating at various te...
AbstractThe present paper reports the synthesis and characterization, photoluminescence thermolumine...
Eu2+ doped phosphate based phosphors were prepared by solid state diffusion technique. The phosphors...
Sr2MgSi2O7:Eu2+, Dy3+ was selected to study the effect of pulverising process on the luminescence pr...
This paper was focused on the elasticoluminescence (ELS) characteristics, especially a response to s...
AbstractSrAl2O4: Eu was synthesized by combustion method. Mechanoluminescence (ML) and Photoluminesc...
Sr3EuxAl10-xSiO20 phosphors were prepared by solid state diffusion method. The photoluminescence and...
WOS:000348005400008Rare-earth-doped aluminosilicates of alkaline earth MgAl2Si2O8: Eu3+, Dy3+ and Mg...
Rare-earth-doped aluminosilicates of alkaline earth MgAl2Si2O8: Eu3+, Dy3+ and MgAl2Si2O8: Eu3+, Gd3...
AbstractThe Sr2MgSi2O7:Eu2+, Ce3+ phosphor was prepared by solid state reaction method, boric acid (...
AbstractEuropium doped di-strontium magnesium di-silicate phosphor namely (Sr2MgSi2O7:Eu3+) was prep...
Europium doped di-strontium magnesium di-silicate phosphor namely (Sr2MgSi2O7:Eu3+) was prepared by ...
AbstractThe Ce3+ doped Ba2MgSi2O7 phosphor is synthesized via high temperature solid state reaction ...
The structure of Sr2MgSi2O7 and Sr2MgSi2O7 doped with Eu2+ were presented in this paper. The samples...
The present paper reports the synthesis and characterization, photoluminescence thermoluminescence a...
Sr2MgSi2O7 (SMS): Eu2+ phosphors were prepared by the solid-state reaction and heating at various te...
AbstractThe present paper reports the synthesis and characterization, photoluminescence thermolumine...
Eu2+ doped phosphate based phosphors were prepared by solid state diffusion technique. The phosphors...
Sr2MgSi2O7:Eu2+, Dy3+ was selected to study the effect of pulverising process on the luminescence pr...
This paper was focused on the elasticoluminescence (ELS) characteristics, especially a response to s...
AbstractSrAl2O4: Eu was synthesized by combustion method. Mechanoluminescence (ML) and Photoluminesc...
Sr3EuxAl10-xSiO20 phosphors were prepared by solid state diffusion method. The photoluminescence and...
WOS:000348005400008Rare-earth-doped aluminosilicates of alkaline earth MgAl2Si2O8: Eu3+, Dy3+ and Mg...
Rare-earth-doped aluminosilicates of alkaline earth MgAl2Si2O8: Eu3+, Dy3+ and MgAl2Si2O8: Eu3+, Gd3...