Y2O3 : Eu3+ microspheres, with an average diameter of 3 mu m, were successfully prepared through a large-scale and facile solvothermal method followed by a subsequent heat treatment. X-ray diffraction, Fourier transform infrared spectroscopy, energy-dispersive X-ray spectra, thermogravimetric and differential thermal analysis, inductive coupled plasma atomic absorption spectrometric analysis, scanning electron microscopy, transmission electron microscopy, photoluminescence spectra, as well kinetic decays, and cathodoluminescence spectra were used to characterize the samples. These microspheres were actually composed of randomly aggregated nanoparticles. The formation mechanisms for the Y2O3 : Eu3+ microspheres have been proposed on an isotr...
Europium activated yttrium oxide red phosphors have gathered more attention because of their good lu...
Nanorods and nanoplates of Y2O3:Eu3+ powders were synthesized through the thermal decomposition of t...
Herein we describe a large scale synthesis of nanosized, monoclinic Y2O3 and Y2O3:Eu3+ with 2 mol% ...
Flower-like Y2O3:Eu3+ microspheres with strong red photoluminescent emission were successfully synth...
Flower-like Y 2O 3:Eu 3+ microspheres with strong red photoluminescent emission were successfully sy...
Uniform monodisperse YBO3:Eu3+/ Tb3+ microspheres have been successfully synthesized via a facile et...
Well-shaped Y2O3:Eu hollow microspheres have been successfully prepared on a large scale via a urea-...
Well-dispersed, uniform Y2O3:Ln(3+) (Ln(3+) = Eu3+, Tb3+) hollow microspheres have been successfully...
Uniform Y2O3 hollow microspheres have been successfully prepared via a urea-based homogeneous precip...
Eu-doped Y2O3 nanophosphors were prepared using combustion synthesis. In this method, urea was emplo...
Herein we report on the crystallized nanoparticles based on Eu3+-doped Y2O3 with 5 mol% using citric...
Red emitting Y2O3:Eu3+ (5 and 10 at.%) submicronic particles were synthesized through ultrasonic spr...
175-177 Nanocrystalline of Y2O3 doped with Eu3+ at different concentrations and also core-shell of Y...
Red emitting Y2O3:Eu3+ (5 and 10 at.%) submicronic particles were synthesized through ultrasonic spr...
Nanorods and nanoplates of Y2O3:Eu3+ powders were synthesized through the thermal decomposition of t...
Europium activated yttrium oxide red phosphors have gathered more attention because of their good lu...
Nanorods and nanoplates of Y2O3:Eu3+ powders were synthesized through the thermal decomposition of t...
Herein we describe a large scale synthesis of nanosized, monoclinic Y2O3 and Y2O3:Eu3+ with 2 mol% ...
Flower-like Y2O3:Eu3+ microspheres with strong red photoluminescent emission were successfully synth...
Flower-like Y 2O 3:Eu 3+ microspheres with strong red photoluminescent emission were successfully sy...
Uniform monodisperse YBO3:Eu3+/ Tb3+ microspheres have been successfully synthesized via a facile et...
Well-shaped Y2O3:Eu hollow microspheres have been successfully prepared on a large scale via a urea-...
Well-dispersed, uniform Y2O3:Ln(3+) (Ln(3+) = Eu3+, Tb3+) hollow microspheres have been successfully...
Uniform Y2O3 hollow microspheres have been successfully prepared via a urea-based homogeneous precip...
Eu-doped Y2O3 nanophosphors were prepared using combustion synthesis. In this method, urea was emplo...
Herein we report on the crystallized nanoparticles based on Eu3+-doped Y2O3 with 5 mol% using citric...
Red emitting Y2O3:Eu3+ (5 and 10 at.%) submicronic particles were synthesized through ultrasonic spr...
175-177 Nanocrystalline of Y2O3 doped with Eu3+ at different concentrations and also core-shell of Y...
Red emitting Y2O3:Eu3+ (5 and 10 at.%) submicronic particles were synthesized through ultrasonic spr...
Nanorods and nanoplates of Y2O3:Eu3+ powders were synthesized through the thermal decomposition of t...
Europium activated yttrium oxide red phosphors have gathered more attention because of their good lu...
Nanorods and nanoplates of Y2O3:Eu3+ powders were synthesized through the thermal decomposition of t...
Herein we describe a large scale synthesis of nanosized, monoclinic Y2O3 and Y2O3:Eu3+ with 2 mol% ...