This paper reports on Y2O3:Eu3+ containing 1 mol% of Ag-0 nanoparticle films recovered with a SiO2 layer by using glass foil as a substrate for a possible optical display device application. The obtained film showed an intense emission at 612 nm due to the Eu3+ 5D0 -> F-7(2) hypersensitive transition, a high transmittance in that emission range, an excellent optical quality, and a high absorption only below 300 nm. Moreover, despite the presence of the SiO2 layer used to improve the phosphor adhesion on Corning (R) foil substrates, the intensity ratios between the emissions assigned to Eu3+ D-5(0) -> F-7(2) (dipole electric transition) and D-5(0) -> F-7(1) (dipole magnetic transition) were not affected by it. The x and y coordinate values f...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
A luminescent thin film, Eu@glass, has been prepared on the surface of glass substrates from a silyl...
This paper reports on Y2O3:Eu3+ containing 1 mol% of Ag-0 nanoparticle films recovered with a SiO2 l...
This paper reports on Y2O3:Eu3+ containing 1 mol% of Ag-0 nanoparticle films recovered with a SiO2 l...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Europium activated yttrium oxide red phosphors have gathered more attention because of their good lu...
Eu-doped Y2O3 nanophosphors were prepared using combustion synthesis. In this method, urea was emplo...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Red emitting cubic Y2O3:Eu3+ nanophosphor with an average particle size in the range of 10-20 nm was...
[[abstract]]Y2O2S:Eu phosphors doped with different concentrations of Eu were fabricated by a high-t...
AbstractIn this paper, Eu doped Y2O3 nanophosphors are prepared at temperature 600oC by the combusti...
A new phosphor Y4Al2O9:Eu3+ (YAM:Eu3+) emitting intense monochromatic red at 612 nm under vacuum ult...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
A luminescent thin film, Eu@glass, has been prepared on the surface of glass substrates from a silyl...
This paper reports on Y2O3:Eu3+ containing 1 mol% of Ag-0 nanoparticle films recovered with a SiO2 l...
This paper reports on Y2O3:Eu3+ containing 1 mol% of Ag-0 nanoparticle films recovered with a SiO2 l...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Europium activated yttrium oxide red phosphors have gathered more attention because of their good lu...
Eu-doped Y2O3 nanophosphors were prepared using combustion synthesis. In this method, urea was emplo...
Y2O3:Eu is a promising red-emitting phosphor owing to its high luminance efficiency, chemical stabil...
Red emitting cubic Y2O3:Eu3+ nanophosphor with an average particle size in the range of 10-20 nm was...
[[abstract]]Y2O2S:Eu phosphors doped with different concentrations of Eu were fabricated by a high-t...
AbstractIn this paper, Eu doped Y2O3 nanophosphors are prepared at temperature 600oC by the combusti...
A new phosphor Y4Al2O9:Eu3+ (YAM:Eu3+) emitting intense monochromatic red at 612 nm under vacuum ult...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
Phosphor material is a light-emitting material that shows great potential in many photonic applicati...
A luminescent thin film, Eu@glass, has been prepared on the surface of glass substrates from a silyl...