The nanocrystalline Sry(2)O(4):Eu3+ was prepared by a poly(vinyl alcohol) (PVA)+glycine-assist combustion method. The results of x-ray diffraction indicate that the resulting Sry(2)O(4):Eu3+ nanocrystals have much broader and less intense peaks compared with those in bulk material. The charge-transfer bands in Sry(2)O(4):Eu3+ nanocrystals shift to higher energies in contrast to those in bulk material. The spectral results revealed that in bulk SrY2O4: Eu3+ the Eu3+ ions occupied three nonequivalent sites, with one at the Sr site: one at the Y(1) site and another at the Y(2) site, while in nanocrystalline SrY2O4: Eu3+, the Eu3+ ions occupied only two nonequivalent sites; one at the Y(1) site and the other at the Y(2) site. Finally, by theore...
[EN] An efficient rapid gel combustion process was used to prepare divalent-eu- ropium-doped stronti...
In the present work, Tb3+ doped Sr3Y1-x(PO4)3:xTb3+ nanocrystals were synthesized by the combustion ...
Incorporation of europium luminescent centre in its chosen valence state Eu2+ or Eu3+ has been effec...
SrY2O4 phosphors were doped with different concentrations of Eu3+ (0.5, 1, 2, 4, 8 and 10 at %) i...
Nanocrystals of SrAl2O4:Eu2+ have been prepared by combustion synthesis. The results of XRD indicate...
The nanocrystalline SrAl2O4: Eu 2+, Dy3+ phosphor powders have been synthesized by combustion proces...
Undoped and rare earth ions (Eu3+, Ce3+, Tb3+) doped β-SrHPO4 nanomaterials were successfully prepar...
We have measured room temperature and low temperature luminescence spectra of Eu3+ in SrAl2O4:Eu3+/2...
Y2O3:Eu3+ nanocrystals were prepared by combustion synthesis. The particle size estimated by X-ray p...
This work aims the preparation of Eu:SrAl2O4 through a sol-gel methodology. Some studies point out t...
Polycrystalline Sr0.96Eu0.02Dy0.02AlO4nano-material has been successfully prepared by combustion met...
Rare-earth ions (Eu(3+), Tb(3+), Dy(3+)) doped SrMoO(4) nanoparticles were prepared by solvothermal ...
Trivalent europium doped yttriate nanophosphors were synthesized by rapid facile gel combustion tech...
SrMoO4 doped with rare earth are still scarce nowadays and have attracted great attention due to the...
Gd2O3 : Eu and (Gd2Y)(2)O-3 : Eu nanocrystals were prepared by the glycine assist combustion method....
[EN] An efficient rapid gel combustion process was used to prepare divalent-eu- ropium-doped stronti...
In the present work, Tb3+ doped Sr3Y1-x(PO4)3:xTb3+ nanocrystals were synthesized by the combustion ...
Incorporation of europium luminescent centre in its chosen valence state Eu2+ or Eu3+ has been effec...
SrY2O4 phosphors were doped with different concentrations of Eu3+ (0.5, 1, 2, 4, 8 and 10 at %) i...
Nanocrystals of SrAl2O4:Eu2+ have been prepared by combustion synthesis. The results of XRD indicate...
The nanocrystalline SrAl2O4: Eu 2+, Dy3+ phosphor powders have been synthesized by combustion proces...
Undoped and rare earth ions (Eu3+, Ce3+, Tb3+) doped β-SrHPO4 nanomaterials were successfully prepar...
We have measured room temperature and low temperature luminescence spectra of Eu3+ in SrAl2O4:Eu3+/2...
Y2O3:Eu3+ nanocrystals were prepared by combustion synthesis. The particle size estimated by X-ray p...
This work aims the preparation of Eu:SrAl2O4 through a sol-gel methodology. Some studies point out t...
Polycrystalline Sr0.96Eu0.02Dy0.02AlO4nano-material has been successfully prepared by combustion met...
Rare-earth ions (Eu(3+), Tb(3+), Dy(3+)) doped SrMoO(4) nanoparticles were prepared by solvothermal ...
Trivalent europium doped yttriate nanophosphors were synthesized by rapid facile gel combustion tech...
SrMoO4 doped with rare earth are still scarce nowadays and have attracted great attention due to the...
Gd2O3 : Eu and (Gd2Y)(2)O-3 : Eu nanocrystals were prepared by the glycine assist combustion method....
[EN] An efficient rapid gel combustion process was used to prepare divalent-eu- ropium-doped stronti...
In the present work, Tb3+ doped Sr3Y1-x(PO4)3:xTb3+ nanocrystals were synthesized by the combustion ...
Incorporation of europium luminescent centre in its chosen valence state Eu2+ or Eu3+ has been effec...