Nanopowders of up-conversion SrGd2O4 orthorhombic (Pnma) phase co-doped with different Yb3+ (1, 2.5 and 5 at%) and constant Er3+ (0.5 at%) ions were successfully prepared via sol-gel assisted combustion. Rietveld refinement indicated unit cell lattice parameters increase with Yb3+ and Er3+ ions doping. Scanning transmission electron microscopy with corresponding energy-dispersive X-ray spectroscopy revealed that obtained powders are composed of agglomerated nanoparticles that have a uniform distribution of all constituting elements. Photoluminescence measurements implied intensification of the up-conversion (UC) emission in the visible part of spectrum with the increase of Yb3+ content, which is followed by a significant change in the green...
WOS: 000362860900037Bright white up conversion emission has been observed in sol gel derived Yb3+/Er...
International audienceLa2O2S:Er3+,Yb3+ nanocryst. up-converting phosphors were synthesized by a com...
© The Royal Society of Chemistry 2016. Lanthanide (Ln3+)-doped nanoparticles that produce strong red...
Gd2O3:Er3+, Yb3+ nanoparticles have been synthesized by a homogeneous precipitation method with EDTA...
The SrMoO₄:Yb³⁺/Er³⁺ nanocrystals (NCs) were synthesized by sol-gel method. The upconversion lumines...
Gd2O3: Er3+, Yb3+ Nanophosphor prepared by combustion synthesis method. Optical and Upconversi...
Powders of Y2O3 co-doped with Yb3+ and Er3+ composed of well-crystallized nanoparticles (30 to 50 nm...
In this investigation, samples of SrGd2O4 doped with different concentration of Yb3+ (2, 4, 6 at%) i...
The Stokes emission of nanocrystalline and bulk Y2O3:Er3+, Yb3+ following 488 nm were reported. Two ...
Double rare earth ion doped GdPO4 nanocrystals with multiform morphologies, such as nanoparticles, n...
The effects of the erbium concentration, crystal hosts and co-dopant on the up converted emission of...
[EN] An efficient rapid gel combustion process was used to prepare divalent-eu- ropium-doped stronti...
Y2O3: Er3+, Yb3+ nanoparticles were synthesized by a homogeneous precipitation method without and wi...
Powders of Y2O3 co-doped with Yb3+ and Er3+ composed of well-crystallized nanoparticles (30 to 50 nm...
Dual excitation, dual emission properties have been introduced in triple rare earth ion (Er3+, Yb3+,...
WOS: 000362860900037Bright white up conversion emission has been observed in sol gel derived Yb3+/Er...
International audienceLa2O2S:Er3+,Yb3+ nanocryst. up-converting phosphors were synthesized by a com...
© The Royal Society of Chemistry 2016. Lanthanide (Ln3+)-doped nanoparticles that produce strong red...
Gd2O3:Er3+, Yb3+ nanoparticles have been synthesized by a homogeneous precipitation method with EDTA...
The SrMoO₄:Yb³⁺/Er³⁺ nanocrystals (NCs) were synthesized by sol-gel method. The upconversion lumines...
Gd2O3: Er3+, Yb3+ Nanophosphor prepared by combustion synthesis method. Optical and Upconversi...
Powders of Y2O3 co-doped with Yb3+ and Er3+ composed of well-crystallized nanoparticles (30 to 50 nm...
In this investigation, samples of SrGd2O4 doped with different concentration of Yb3+ (2, 4, 6 at%) i...
The Stokes emission of nanocrystalline and bulk Y2O3:Er3+, Yb3+ following 488 nm were reported. Two ...
Double rare earth ion doped GdPO4 nanocrystals with multiform morphologies, such as nanoparticles, n...
The effects of the erbium concentration, crystal hosts and co-dopant on the up converted emission of...
[EN] An efficient rapid gel combustion process was used to prepare divalent-eu- ropium-doped stronti...
Y2O3: Er3+, Yb3+ nanoparticles were synthesized by a homogeneous precipitation method without and wi...
Powders of Y2O3 co-doped with Yb3+ and Er3+ composed of well-crystallized nanoparticles (30 to 50 nm...
Dual excitation, dual emission properties have been introduced in triple rare earth ion (Er3+, Yb3+,...
WOS: 000362860900037Bright white up conversion emission has been observed in sol gel derived Yb3+/Er...
International audienceLa2O2S:Er3+,Yb3+ nanocryst. up-converting phosphors were synthesized by a com...
© The Royal Society of Chemistry 2016. Lanthanide (Ln3+)-doped nanoparticles that produce strong red...