DocumentCode :
1332661
Title :
Structural Dependence of Photoluminescence and Room-Temperature Ferromagnetism in Lightly Cu-Doped ZnO Nanorods
Author :
Lin, C.C. ; Young, S.L. ; Kung, C.Y. ; Chen, H.Z. ; Kao, M.C. ; Horng, Lance ; Shih, Y.T.
Author_Institution :
Dept. of Electr. Eng., Nat. Chung Hsing Univ., Taichung, Taiwan
Volume :
47
Issue :
10
fYear :
2011
Firstpage :
3366
Lastpage :
3368
Abstract :
Well-defined 1-D ZnO and ZnO:Cu semiconductor nanostructures have been fabricated by a low temperature solution process. Cu (0.073 nm) is chosen as a dopant due to the similar ionic radius with Zn (0.074 nm). The radius of ZnO:Cu nanorods observed by FE-SEM is lager than that of pure ZnO which indicates the growth rate of the nanorods can be obviously enhanced by the light doping of Cu. The XRD patterns of both compositions with single diffraction peak (002) show the same wurtzite hexagonal structure. Photoluminescence spectra show a red-shift of the UV emission peak position and a decrease of the luminescence intensity in green-yellow region. From the room temperature hysteresis loop, ferromagnetism is observed and the saturation magnetization decreases with the increase of the Cu concentration for ZnO:Cu nanorods.
Keywords :
II-VI semiconductors; X-ray diffraction; copper; crystal structure; ferromagnetic materials; field emission electron microscopy; magnetic hysteresis; nanofabrication; nanorods; photoluminescence; scanning electron microscopy; semiconductor doping; semiconductor growth; ultraviolet spectra; wide band gap semiconductors; zinc compounds; FE-SEM; UV emission peak position; XRD patterns; ZnO:Cu; dopant; green-yellow region; hysteresis loop; low temperature solution process; nanorods; photoluminescence; red shift; room-temperature ferromagnetism; saturation magnetization; semiconductor nanostructures; single diffraction peak (002); size 0.073 nm; size 0.074 nm; temperature 293 K to 298 K; wurtzite hexagonal structure; Copper; Nanowires; Photoluminescence; Saturation magnetization; Temperature measurement; Zinc oxide; Nanostructure; photoluminescence; saturation magnetization;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2011.2159299
Filename :
6028253
Link To Document :
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