Nearly monodisperse and well-defined one-dimensional (1D) Gd2O3:Eu3+ nanorods and microrods were successfully prepared through a large-scale and facile hydrothermal method followed by a subsequent heat treatment process, without using any catalyst or template. X-ray diffraction (XRD), thermogravimetric analysis and differential scanning calorimetry (TGA-DSC), scanning electron microscopy (SEM), transmission electron microscopy (TEM), high-resolution transmission electron microscopy (HRTEM), selected area electron diffraction (SAED), photoluminescence (PL) and cathodoluminescence (CL) spectra as well as kinetic decays were used to characterize the samples. The size of the Gd2O3:Eu3+ rods could be modulated from micro- to nanoscale with the i...
One-dimensional (1D) Y2O3:Tb3+ and Gd2O3:Tb3+ microrods have been successfully prepared through a la...
Different phases of Eu3+ activated gadolinium oxide (Gd (OH)(3), GdOOH and Gd2O3) nanorods have been...
Different phases of Eu3+ activated gadolinium oxide (Gd (OH)(3), GdOOH and Gd2O3) nanorods have been...
Various morphologies of Eu3+ activated gadolinium oxide have been prepared by hydrothermal method us...
Eu3 (8 mol) activated gadolinium oxide nanorods have been prepared by hydrothermal method without an...
Eu3+ (8 mol%) activated gadolinium oxide nanorods have been prepared by hydrothermal method without ...
Eu(3+) (8 mol%) activated gadolinium oxide nanorods have been prepared by hydrothermal method withou...
A comparative study of spherical and rod-like nanocrystalline Gd 2O 3:Eu 3+ (Gd1·92Eu0·08O3) red p...
A comparative study of spherical and rod-like nanocrystalline GdO:Eu (GdEuO) red phosphors prepared ...
A comparative study of spherical and rod-like nanocrystalline GdO:Eu (GdEuO) red phosphors prepared ...
A comparative study of spherical and rod-like nanocrystalline GdO:Eu (GdEuO) red phosphors prepared ...
Gd2O3:Eu3+ (0.5-8.0 mol%) nanophosphors have been prepared by low temperature solution combustion me...
One dimensional Gd(OH)(3) nanorods and nanotubes were successfully produced through a microwave-assi...
Gd2O3:Eu3+ (0.5-8.0 mol%) nanophosphors have been prepared by low temperature solution combustion me...
Different phases of Eu(3+) activated gadolinium oxide (Gd (OH)(3), GdOOH and Gd(2)O(3)) nanorods hav...
One-dimensional (1D) Y2O3:Tb3+ and Gd2O3:Tb3+ microrods have been successfully prepared through a la...
Different phases of Eu3+ activated gadolinium oxide (Gd (OH)(3), GdOOH and Gd2O3) nanorods have been...
Different phases of Eu3+ activated gadolinium oxide (Gd (OH)(3), GdOOH and Gd2O3) nanorods have been...
Various morphologies of Eu3+ activated gadolinium oxide have been prepared by hydrothermal method us...
Eu3 (8 mol) activated gadolinium oxide nanorods have been prepared by hydrothermal method without an...
Eu3+ (8 mol%) activated gadolinium oxide nanorods have been prepared by hydrothermal method without ...
Eu(3+) (8 mol%) activated gadolinium oxide nanorods have been prepared by hydrothermal method withou...
A comparative study of spherical and rod-like nanocrystalline Gd 2O 3:Eu 3+ (Gd1·92Eu0·08O3) red p...
A comparative study of spherical and rod-like nanocrystalline GdO:Eu (GdEuO) red phosphors prepared ...
A comparative study of spherical and rod-like nanocrystalline GdO:Eu (GdEuO) red phosphors prepared ...
A comparative study of spherical and rod-like nanocrystalline GdO:Eu (GdEuO) red phosphors prepared ...
Gd2O3:Eu3+ (0.5-8.0 mol%) nanophosphors have been prepared by low temperature solution combustion me...
One dimensional Gd(OH)(3) nanorods and nanotubes were successfully produced through a microwave-assi...
Gd2O3:Eu3+ (0.5-8.0 mol%) nanophosphors have been prepared by low temperature solution combustion me...
Different phases of Eu(3+) activated gadolinium oxide (Gd (OH)(3), GdOOH and Gd(2)O(3)) nanorods hav...
One-dimensional (1D) Y2O3:Tb3+ and Gd2O3:Tb3+ microrods have been successfully prepared through a la...
Different phases of Eu3+ activated gadolinium oxide (Gd (OH)(3), GdOOH and Gd2O3) nanorods have been...
Different phases of Eu3+ activated gadolinium oxide (Gd (OH)(3), GdOOH and Gd2O3) nanorods have been...