The formation of suitable defects levels is crucial to the optical performance of the electron trapping materials which provide a wide range of applications from the initial civil uses to life sciences, energy and environmental engineering. SrGa2O4, possessing a one-dimensional chain structure of cations along a crystal direction, exhibits a self-activated blue long persistent luminescence (LPL) related to the intrinsic defects. Different trap depths are generated forming a successive defect structure in this three-dimensional framework of SrGa2O4 containing channels occupied by Sr2+ when Tb3+ ions are introduced. The captured carriers in shallow traps are spontaneously released at room temperature and recombine in the luminescence center o...
Nanocyrstalline Tb3+-doped LaGaO3 phosphors were prepared through a Pechini-type sol-gel process. X-...
SrAl_2O_4 phosphor excited with fluorescent light or sunlight, has been recently reported to be a lo...
A phenomenon of light emission by certain materials after exposure to an excitation source is called...
Wavelength-dependent thermoluminescence (TL) experiments were performed on SrAl2O4:Eu, SrAl2O4:Eu,B,...
The low-dimensional structure of the SrGa<sub>2</sub>O<sub>4</sub> host exhibits a self-activated lo...
Here we report a new type of photo-stimulable storage material exhibiting a super-long (>20 h) ye...
Although the luminescence characteristics of persistent phosphors have been extensively investigated...
Tb3+ activated Sr4Al14O25 phosphors were synthesized by the high temperature solid-state reaction. F...
Wavelength-dependent thermoluminescence (TL) experiments were performed on SrAl2O4:Eu, SrAl2O4:Eu,B,...
Lanthanide ions act as excellent luminescence centers and good charge carrier traps. By selecting pr...
We report on the persistent luminescence of SrAl2O4: Eu2+, Cr3+ phosphor centered at 760 nm. The pho...
SrAl2O4:Eu,Dy is presumably the best known persistent luminescent phosphor. At room temperature, its...
The persistent phosphorescence and thermoluminescence of SrAl2O4:Eu2+:Dy3+ is reported for a variety...
Rare-earth-doped strontium aluminates find many applications. One particular property is persistent ...
SrAl2O4:Eu,Dy is presumably the best known persistent luminescent phosphor. At room temperature, its...
Nanocyrstalline Tb3+-doped LaGaO3 phosphors were prepared through a Pechini-type sol-gel process. X-...
SrAl_2O_4 phosphor excited with fluorescent light or sunlight, has been recently reported to be a lo...
A phenomenon of light emission by certain materials after exposure to an excitation source is called...
Wavelength-dependent thermoluminescence (TL) experiments were performed on SrAl2O4:Eu, SrAl2O4:Eu,B,...
The low-dimensional structure of the SrGa<sub>2</sub>O<sub>4</sub> host exhibits a self-activated lo...
Here we report a new type of photo-stimulable storage material exhibiting a super-long (>20 h) ye...
Although the luminescence characteristics of persistent phosphors have been extensively investigated...
Tb3+ activated Sr4Al14O25 phosphors were synthesized by the high temperature solid-state reaction. F...
Wavelength-dependent thermoluminescence (TL) experiments were performed on SrAl2O4:Eu, SrAl2O4:Eu,B,...
Lanthanide ions act as excellent luminescence centers and good charge carrier traps. By selecting pr...
We report on the persistent luminescence of SrAl2O4: Eu2+, Cr3+ phosphor centered at 760 nm. The pho...
SrAl2O4:Eu,Dy is presumably the best known persistent luminescent phosphor. At room temperature, its...
The persistent phosphorescence and thermoluminescence of SrAl2O4:Eu2+:Dy3+ is reported for a variety...
Rare-earth-doped strontium aluminates find many applications. One particular property is persistent ...
SrAl2O4:Eu,Dy is presumably the best known persistent luminescent phosphor. At room temperature, its...
Nanocyrstalline Tb3+-doped LaGaO3 phosphors were prepared through a Pechini-type sol-gel process. X-...
SrAl_2O_4 phosphor excited with fluorescent light or sunlight, has been recently reported to be a lo...
A phenomenon of light emission by certain materials after exposure to an excitation source is called...