Title of article :
Electron spectroscopy imaging and surface defect configuration of zinc oxide nanostructures under different annealing ambient
Author/Authors :
Ling Chuo Ann، نويسنده , , Shahrom Mahmud، نويسنده , , Siti Khadijah Mohd Bakhori، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Abstract :
In this study, electron spectroscopy imaging was used to visualize the elemental distribution of zinc oxide nanopowder. Surface modification in zinc oxide was done through annealing treatment and type of surface defect was also inferred from the electron spectroscopy imaging investigation. The micrographs revealed the non-stoichiometric distribution of the elements in the unannealed samples. Annealing the samples in nitrogen and oxygen ambient at 700 °C would alter the density of the elements in the samples as a result of removal or absorption of oxygen. The electrical measurement showed that nitrogen annealing treatment improved surface electrical conductivity, whereas oxygen treatment showed an adverse effect. Observed change in the photoluminescence green emission suggested that oxygen vacancies play a significant role as surface defects. Structural investigation carried out through X-ray diffraction revealed the polycrystalline nature of both zinc oxide samples with hexagonal phase whereby annealing process increased the crystallinity of both zinc oxide specimens. Due to the different morphologies of the two types of zinc oxide nanopowders, X-ray diffraction results showed different stress levels in their structures and the annealing treatment give significant effect to the structural stress. Electron spectroscopy imaging was a useful technique to identify the elemental distribution as well as oxygen defect in zinc oxide nanopowder.
Keywords :
Zinc oxide , Electron spectroscopy imaging , Photoluminescence , Ambient , Annealing
Journal title :
Applied Surface Science
Journal title :
Applied Surface Science