DocumentCode
3016507
Title
Synthesis of Cu and Fe-doped ZnO nano-rod by hydrolysis of metal powders
Author
Young Rang Uhm ; Chang Kyu Rhee ; Choi Sun Ju
Author_Institution
Radioisotope Res. Div., Korea Atomic Energy Res. Inst. (KAERI), Daejeon, South Korea
fYear
2013
fDate
5-8 Aug. 2013
Firstpage
764
Lastpage
767
Abstract
ZnOs with flower- and rod- like shapes were prepared by the simple hydrolysis of Zn metal powder. The starting material of Zn nano powder was put into distilled water. Small about of acetic acid was added, and the solution was then refluxed at 60 °C for 8 h. Cu and Fe-doped ZnO nanorods were synthesized by a very simple process employing a hydrolysis of metal powders. Zn, Cu, and Fe nano-powders were used as starting materials and incorporated into distilled water. The solution was refluxed at 60 °C for 24 h to obtain the precipitates from the hydrolysis of Zn, and the dopants (Cu and Fe). The TEM results for ZnO with and without metal doping showed that the produced powders had a rod-like shape. The rod shape was attributable to the zinc oxide from the hydrolysis of Zn. With an increase in the doping content, the UV-vis spectra were shifted to a long wave length and this result indicates that the band gap was changed by an metal-doping.
Keywords
II-VI semiconductors; copper; doping profiles; energy gap; iron; nanofabrication; nanorods; precipitation (physical chemistry); semiconductor growth; transmission electron microscopy; ultraviolet spectra; visible spectra; wide band gap semiconductors; zinc compounds; Cu nanopowders; Cu-doped zinc oxide nanorod synthesis; Fe nanopowders; Fe-doped zinc oxide nanorod synthesis; TEM; UV-vis spectra; Zn metal powder hydrolysis; Zn nanopowder; ZnO:Cu,Fe; acetic acid; band gap; distilled water; doping content; flower-like shape; metal doping; precipitates; rod-like shape; temperature 60 degC; time 24 h; time 8 h; Crystals; Iron; Powders; Shape; Zinc oxide;
fLanguage
English
Publisher
ieee
Conference_Titel
Nanotechnology (IEEE-NANO), 2013 13th IEEE Conference on
Conference_Location
Beijing
ISSN
1944-9399
Print_ISBN
978-1-4799-0675-8
Type
conf
DOI
10.1109/NANO.2013.6720904
Filename
6720904
Link To Document