EU3+ -doped Y3Al5O12 (YAG:Eu3+) phosphors were synthesized by a facile sol-gel combustion method. In this process, citric acid traps the constituent cations and reduces the diffusion length of the precursors. YAG phase is obtained through sintering at 900 degrees C for 2h. There were no intermediate phases such as YAlO3 (YAP) and Y4Al2O9 (YAM) observed. The charge transfer band of nanocrystalline phosphors shows a shift toward the high-energy side, compared with that of amorphous ones due to lower covalency of Eu-O bond for nanocrystalline phosphors. The higher concentration quenching in YAG:EU3+ nanophosphors may be caused by the confinement effect on resonant energy transfer of nanocrystalline. It also indicates that the sol-gel combustio...
By using metal nitrates and oxides as the starting materials, Y3Al5O12 (YAG) and YAG: RE3+ (RE: Eu, ...
International audienceLuminescent Y3Al5O12 : Eu3+ (YAG : Eu3+) and Y3Al5O12 : Tb3+ (YAG : Tb3+) powd...
International audienceLuminescent Y3Al5O12 : Eu3+ (YAG : Eu3+) and Y3Al5O12 : Tb3+ (YAG : Tb3+) powd...
Y3Al5O12:Eu nanophosphors were synthesized by a gel combustion method. The structure of phosphors wa...
High-quality Ce3+-doped Y3Al5O12 (YAG:Ce3+) phosphors were synthesized by a facile sol-gel combustio...
Nanocrystalline Y3Al5O12:Eu3+ phosphors with particle size about 20-40 nm have been synthesized by a...
The Eu3+-doped Y3Al5O12, phosphor ultrafine powders were synthesized by the sol-gel method using met...
Nanocrystalline Y3Al5O12:Eu3+ phosphors with particle size about 20-40 nm have been synthesized by a...
By using metal nitrates as starting materials and citric acid as complexing agent, Y3Al5O12 (YAG) an...
Europium-ion doped Y3Al5O12 garnet nanophosphors (YAG:Eu3+) with wide ranging size tunability (40–15...
The synthesis and optical properties of Y3Al5O12:Tb3+ phosphors are reported in this paper. Y3Al5O12...
Among the various types of synthesis techniques for phosphors, flame spray pyrolysis (FSP) is a powe...
Abstract This paper reports the comparative investigations of the structural and spectral properties...
In Y2O3–Al2O3 system, compounds Y3Al5O12 (yttrium aluminum garnet-YAG), YAP (yttrium aluminum perovs...
This paper presents the study on synthesized yttrium aluminum garnet (YAG), europium-doped YAG (YAG:...
By using metal nitrates and oxides as the starting materials, Y3Al5O12 (YAG) and YAG: RE3+ (RE: Eu, ...
International audienceLuminescent Y3Al5O12 : Eu3+ (YAG : Eu3+) and Y3Al5O12 : Tb3+ (YAG : Tb3+) powd...
International audienceLuminescent Y3Al5O12 : Eu3+ (YAG : Eu3+) and Y3Al5O12 : Tb3+ (YAG : Tb3+) powd...
Y3Al5O12:Eu nanophosphors were synthesized by a gel combustion method. The structure of phosphors wa...
High-quality Ce3+-doped Y3Al5O12 (YAG:Ce3+) phosphors were synthesized by a facile sol-gel combustio...
Nanocrystalline Y3Al5O12:Eu3+ phosphors with particle size about 20-40 nm have been synthesized by a...
The Eu3+-doped Y3Al5O12, phosphor ultrafine powders were synthesized by the sol-gel method using met...
Nanocrystalline Y3Al5O12:Eu3+ phosphors with particle size about 20-40 nm have been synthesized by a...
By using metal nitrates as starting materials and citric acid as complexing agent, Y3Al5O12 (YAG) an...
Europium-ion doped Y3Al5O12 garnet nanophosphors (YAG:Eu3+) with wide ranging size tunability (40–15...
The synthesis and optical properties of Y3Al5O12:Tb3+ phosphors are reported in this paper. Y3Al5O12...
Among the various types of synthesis techniques for phosphors, flame spray pyrolysis (FSP) is a powe...
Abstract This paper reports the comparative investigations of the structural and spectral properties...
In Y2O3–Al2O3 system, compounds Y3Al5O12 (yttrium aluminum garnet-YAG), YAP (yttrium aluminum perovs...
This paper presents the study on synthesized yttrium aluminum garnet (YAG), europium-doped YAG (YAG:...
By using metal nitrates and oxides as the starting materials, Y3Al5O12 (YAG) and YAG: RE3+ (RE: Eu, ...
International audienceLuminescent Y3Al5O12 : Eu3+ (YAG : Eu3+) and Y3Al5O12 : Tb3+ (YAG : Tb3+) powd...
International audienceLuminescent Y3Al5O12 : Eu3+ (YAG : Eu3+) and Y3Al5O12 : Tb3+ (YAG : Tb3+) powd...