The size controllable Gd2O3:Eu3+ luminescence nanotubes were successfully prepared using a simple method by coating gadolinium compounds on the carbon nanotubes and then firing the carbon nanotubes. The morphology of the obtained Gd2O3:Eu3+ nanotubes was determined by transmission electron microscopy (TEM). It was found that the obtained nanotubes have the outer diameters of similar to 100 nm, the inner diameters of similar to 50 nm, and the lengths of several tens of microns. The sizes of Gd2O3:Eu3+ nanotubes can be easily controlled by changing the reaction times and the concentration of reactants
Gd2O3 : Eu and (Gd2Y)(2)O-3 : Eu nanocrystals were prepared by the glycine assist combustion method....
Gd2O3: EU3+ phosphors were prepared by urea homogeneous precipitation with different surfactant and ...
Various morphologies of Eu3+ activated gadolinium oxide have been prepared by hydrothermal method us...
Uniform Gd(OH)(3) nanotubes have been prepared via a simple wet-chemical route at ambient pressure a...
Nearly monodisperse and well-defined one-dimensional (1D) Gd2O3:Eu3+ nanorods and microrods were suc...
Low dimensional europium (Eu<SUP>3+</SUP>)-doped gadolinium oxide (Gd<SUB>2</SUB>O<SUB>3</SUB>) lant...
Gd2O3:Eu3+ (0.5-8.0 mol%) nanophosphors have been prepared by low temperature solution combustion me...
Lanthanide doped oxides nanotubes have novel physical, chemical, optical and structural properties, ...
The nanocrystalline Gd2O3:Eu3+ powders with cubic phase were prepared by a combustion method in the ...
Abstract The synthesis, morphological character-ization, and optical properties of colloidal, Eu(III...
Uniform Gd2O3 : Eu3+ luminescent nanowires were prepared on a large scale by a facile solvothermal m...
International audienceMonoclinic and cubic europium-doped Gd2O3 structures were selectively synthesi...
A comparative study of spherical and rod-like nanocrystalline Gd 2O 3:Eu 3+ (Gd1·92Eu0·08O3) red p...
Multicolor and monodisperse Gd2O3: Ln (Ln = Eu3+, Tb3+, Dy3+, Sm3+, Yb3+/Er3+, Yb3+/Tm3+, and Yb3+/H...
The processing of europium-doped gadolinia (Gd2O3:Eu) nanostructured particles has been realized usi...
Gd2O3 : Eu and (Gd2Y)(2)O-3 : Eu nanocrystals were prepared by the glycine assist combustion method....
Gd2O3: EU3+ phosphors were prepared by urea homogeneous precipitation with different surfactant and ...
Various morphologies of Eu3+ activated gadolinium oxide have been prepared by hydrothermal method us...
Uniform Gd(OH)(3) nanotubes have been prepared via a simple wet-chemical route at ambient pressure a...
Nearly monodisperse and well-defined one-dimensional (1D) Gd2O3:Eu3+ nanorods and microrods were suc...
Low dimensional europium (Eu<SUP>3+</SUP>)-doped gadolinium oxide (Gd<SUB>2</SUB>O<SUB>3</SUB>) lant...
Gd2O3:Eu3+ (0.5-8.0 mol%) nanophosphors have been prepared by low temperature solution combustion me...
Lanthanide doped oxides nanotubes have novel physical, chemical, optical and structural properties, ...
The nanocrystalline Gd2O3:Eu3+ powders with cubic phase were prepared by a combustion method in the ...
Abstract The synthesis, morphological character-ization, and optical properties of colloidal, Eu(III...
Uniform Gd2O3 : Eu3+ luminescent nanowires were prepared on a large scale by a facile solvothermal m...
International audienceMonoclinic and cubic europium-doped Gd2O3 structures were selectively synthesi...
A comparative study of spherical and rod-like nanocrystalline Gd 2O 3:Eu 3+ (Gd1·92Eu0·08O3) red p...
Multicolor and monodisperse Gd2O3: Ln (Ln = Eu3+, Tb3+, Dy3+, Sm3+, Yb3+/Er3+, Yb3+/Tm3+, and Yb3+/H...
The processing of europium-doped gadolinia (Gd2O3:Eu) nanostructured particles has been realized usi...
Gd2O3 : Eu and (Gd2Y)(2)O-3 : Eu nanocrystals were prepared by the glycine assist combustion method....
Gd2O3: EU3+ phosphors were prepared by urea homogeneous precipitation with different surfactant and ...
Various morphologies of Eu3+ activated gadolinium oxide have been prepared by hydrothermal method us...