Li2SrSiO4:M (M: Dy3+ and Sm3+) phosphors were synthesized by the conventional solid state reaction. The synthesized materials were characterized by powder XRD. The emission and excitation spectra of these phosphors were measured at room temperature with a spectrofluorometer. The first phosphor, Li2SrSiO4:Dy3+, emits at 479, 573, and 666 nm upon 351 nm excitation. The second phosphor, Li2SrSiO4:Sm3+, emits at 561–571, 594, 647–655, and 703–713 nm upon 399 nm excitation. Also, the dependence of the photoluminescence properties of both phosphors on boric acid concentration was investigated. The results showed that boric acid was effective in improving the photoluminescence intensity of both phosphors. © 2015, Springer Science+Business Media Ne...
Green emitting Li2Mg1−xZrO4:xTb3+ (0.1 ≤ x ≤ 2.0) phosphor powders were synthesized via the wet chem...
Mn2+ ions codoped Sr2SiO4 : Dy3+ phosphors were prepared by the solid-state reaction method using NH...
WOS:000836307400001 PubMed ID:35894109In this research, the co-dopant effects on photoluminescence ...
Li2SrSiO4:M (M: Dy3+ and Sm3+) phosphors were synthesized by the conventional solid state reaction. ...
MSr4(BO3)(3):Sm3+ (M= Li, Na) materials were synthesized a solution combustion synthesis method foll...
Dy3+ and Sm3+ doped Li4CaB2O6 materials were prepared by the solid state reaction. The phase analysi...
Pure and Pb 2+ doped Li2SrSiO4 materials were synthesized at 900°C for 12 h in air. The phases of th...
Red phosphor Li2SrSiO4:Eu3+, Sm3+ was successfully synthesised by solid state reaction. The photolum...
Li6CaB3O8.5: M3+ (M3+: Dy and Sm) phosphors were synthesized by a solution combustion synthesis. The...
WOS:000681042500003In this study, Y1.50Sc0.50O3 :Sm3+ and Y1.50Sc0.50O3 :Dy3+ have been synthesized ...
Pure, Pb2+ and Bi3+ doped Li4SrCa(SiO4)2 materials were prepared by using a conventional solid state...
Sr2Mg(BO3)(2) thermoluminescence (TL) phosphor was synthesized by a high temperature solid state rea...
Sr2Mg(BO3)(2) thermoluminescence (TL) phosphor was synthesized by a high temperature solid state rea...
M2Mg(BO3)2:Sm3+ (M:Sr and Ba) phosphors were synthesized by a solution combustion synthesis method f...
Pb2+, Dy3+, and Sm3+ doped CaAlBO4 materials were synthesized by the conventional solid state reacti...
Green emitting Li2Mg1−xZrO4:xTb3+ (0.1 ≤ x ≤ 2.0) phosphor powders were synthesized via the wet chem...
Mn2+ ions codoped Sr2SiO4 : Dy3+ phosphors were prepared by the solid-state reaction method using NH...
WOS:000836307400001 PubMed ID:35894109In this research, the co-dopant effects on photoluminescence ...
Li2SrSiO4:M (M: Dy3+ and Sm3+) phosphors were synthesized by the conventional solid state reaction. ...
MSr4(BO3)(3):Sm3+ (M= Li, Na) materials were synthesized a solution combustion synthesis method foll...
Dy3+ and Sm3+ doped Li4CaB2O6 materials were prepared by the solid state reaction. The phase analysi...
Pure and Pb 2+ doped Li2SrSiO4 materials were synthesized at 900°C for 12 h in air. The phases of th...
Red phosphor Li2SrSiO4:Eu3+, Sm3+ was successfully synthesised by solid state reaction. The photolum...
Li6CaB3O8.5: M3+ (M3+: Dy and Sm) phosphors were synthesized by a solution combustion synthesis. The...
WOS:000681042500003In this study, Y1.50Sc0.50O3 :Sm3+ and Y1.50Sc0.50O3 :Dy3+ have been synthesized ...
Pure, Pb2+ and Bi3+ doped Li4SrCa(SiO4)2 materials were prepared by using a conventional solid state...
Sr2Mg(BO3)(2) thermoluminescence (TL) phosphor was synthesized by a high temperature solid state rea...
Sr2Mg(BO3)(2) thermoluminescence (TL) phosphor was synthesized by a high temperature solid state rea...
M2Mg(BO3)2:Sm3+ (M:Sr and Ba) phosphors were synthesized by a solution combustion synthesis method f...
Pb2+, Dy3+, and Sm3+ doped CaAlBO4 materials were synthesized by the conventional solid state reacti...
Green emitting Li2Mg1−xZrO4:xTb3+ (0.1 ≤ x ≤ 2.0) phosphor powders were synthesized via the wet chem...
Mn2+ ions codoped Sr2SiO4 : Dy3+ phosphors were prepared by the solid-state reaction method using NH...
WOS:000836307400001 PubMed ID:35894109In this research, the co-dopant effects on photoluminescence ...