Defects in three different types of ZnO nanostructures before and after annealing under different conditions were studied. The annealing atmosphere and temperature were found to strongly affect the yellow and orange-red defect emissions, while green emission was not significantly affected by annealing. The defect emissions exhibited a strong dependence on the temperature and excitation wavelength, with some defect emissions observable only at low temperatures and for certain excitation wavelengths. The yellow emission in samples prepared by a hydrothermal method is likely due to the presence of OH groups, instead of the commonly assumed interstitial oxygen defect. The green and orange-red emissions are likely due to donor acceptor transitio...
Photoluminescence spectroscopy has been used to study single crystalline ZnO samples systematically ...
This work concerns ZnO nanoparticles (NPs), with sizes of tens of nm, produced by ablation with a pu...
Zinc oxide (ZnO) is a promising material for ultra-violet optoelectronics applications due to its di...
Defects in three different types of ZnO nanostructures before and after annealing under different co...
ZnO commonly exhibits luminescence in the visible spectral range due to different intrinsic defects....
Zinc oxide (ZnO) is a wide bandgap semiconductor which has great potential for a variety of practica...
In this work, the correlation between the characteristic green emissions and specific defects of ZnO...
Defects present in ZnO nanocrystals prepared by a wet chemical method have been characterized by pho...
International audienceWe report an in-depth analysis of ZnO micropods emission. A strong correlation...
We investigated the morphology and properties of ZnO nanorods synthesized at 90 °C from the solution...
ZnO nanoparticles were synthesized in ethanolic solution using a sol-gel method. The structural and ...
Due to the abundance of intrinsic defects in zinc oxide (ZnO) the material properties are often gove...
International audienceThe nature of defects in ZnO smoke was studied at different stages of the mate...
The applications of zinc oxide (ZnO) nanostructures require tuning of the defect levels which govern...
ZnO nanorod arrays were fabricated using a hydrothermal method. The nanorods were studied by scannin...
Photoluminescence spectroscopy has been used to study single crystalline ZnO samples systematically ...
This work concerns ZnO nanoparticles (NPs), with sizes of tens of nm, produced by ablation with a pu...
Zinc oxide (ZnO) is a promising material for ultra-violet optoelectronics applications due to its di...
Defects in three different types of ZnO nanostructures before and after annealing under different co...
ZnO commonly exhibits luminescence in the visible spectral range due to different intrinsic defects....
Zinc oxide (ZnO) is a wide bandgap semiconductor which has great potential for a variety of practica...
In this work, the correlation between the characteristic green emissions and specific defects of ZnO...
Defects present in ZnO nanocrystals prepared by a wet chemical method have been characterized by pho...
International audienceWe report an in-depth analysis of ZnO micropods emission. A strong correlation...
We investigated the morphology and properties of ZnO nanorods synthesized at 90 °C from the solution...
ZnO nanoparticles were synthesized in ethanolic solution using a sol-gel method. The structural and ...
Due to the abundance of intrinsic defects in zinc oxide (ZnO) the material properties are often gove...
International audienceThe nature of defects in ZnO smoke was studied at different stages of the mate...
The applications of zinc oxide (ZnO) nanostructures require tuning of the defect levels which govern...
ZnO nanorod arrays were fabricated using a hydrothermal method. The nanorods were studied by scannin...
Photoluminescence spectroscopy has been used to study single crystalline ZnO samples systematically ...
This work concerns ZnO nanoparticles (NPs), with sizes of tens of nm, produced by ablation with a pu...
Zinc oxide (ZnO) is a promising material for ultra-violet optoelectronics applications due to its di...