摘要
The Y2O3 : EU^3 + hollow spheres were synthesized using the template-mediated method. XRD patterns indicated that the broadened diffraction peaks resulted from nanocrystals in Y2O3 : EU^3 + shells of hollow spheres. XPS spectra showed that the Y2O3 : EU^3 + shells were linked with silica cores by a Si-O-Y chemical bond. SEM and TEM observations showed that the size of the SiO2/Y2O3 : EU^3 + core-shell particle was about 100 nm, and the thickness of the Y2O3 : EU^3 + hollow sphere was less than 5 nm. The photoluminescence spectra of the SIO2/Y2O3 : EU^3 + core-shell materials and Y2O3 : EU^3 + hollow spheres had red luminescent properties, and the broadened emission peaks came from nanocrystals composed of the Y2O3 : EU^3 + shell.
The Y2O3 : EU^3 + hollow spheres were synthesized using the template-mediated method. XRD patterns indicated that the broadened diffraction peaks resulted from nanocrystals in Y2O3 : EU^3 + shells of hollow spheres. XPS spectra showed that the Y2O3 : EU^3 + shells were linked with silica cores by a Si-O-Y chemical bond. SEM and TEM observations showed that the size of the SiO2/Y2O3 : EU^3 + core-shell particle was about 100 nm, and the thickness of the Y2O3 : EU^3 + hollow sphere was less than 5 nm. The photoluminescence spectra of the SIO2/Y2O3 : EU^3 + core-shell materials and Y2O3 : EU^3 + hollow spheres had red luminescent properties, and the broadened emission peaks came from nanocrystals composed of the Y2O3 : EU^3 + shell.
基金
Project supported by National Natural Science Foundation (40675083)