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Magnetism in Mn and Co doped ZnO bulk samples
作者姓名:WANG  YongQiang  YUAN  SongLiu  SONG  YunXing  LIU  Li  TIAN  ZhaoMing  LI  Pai  ZHOU  YuanMing  LI  YunLong  YIN  ShiYan
作者单位:Department of Physics, Huazhong University of Science and Technology, Wuhan 430074, China
基金项目:Supported by the National 973 Project (Grant No. 2006CB921606) and National Natural Science Foundation of China (Grant No. 10574049)
摘    要:Bulk samples with nominal composition Zn0.95Co0.05O and Zn0.92Co0.05Mn0.03O were fabricated by a solid-state reaction method at 600℃.X-ray diffraction experiment showed that the peaks of secondary phase Co3O4 with a cubic structure were visible in both samples,besides the main peaks of wurtzite structure as ZnO.Magnetization measurement indicated that doping Co alone can induce ferromag- netism in ZnO itself,while the introduction of Mn significantly enhances ferromagnetism.However, both samples showed different magnetic behavior at temperatures below 50 K.It was also noted that ferromagnetic coupling interaction was weakened due to the presence of antiferromagnetic Co3O4.

关 键 词:    掺杂  氧化锌块  磁性  铁磁现象
收稿时间:8 November 2006
修稿时间:2006-11-082006-11-15

Magnetism in Mn and Co doped ZnO bulk samples
WANG YongQiang YUAN SongLiu SONG YunXing LIU Li TIAN ZhaoMing LI Pai ZHOU YuanMing LI YunLong YIN ShiYan.Magnetism in Mn and Co doped ZnO bulk samples[J].Chinese Science Bulletin,2007,52(8):1019-1023.
Authors:Wang YongQiang  Yuan SongLiu  Song YunXing  Liu Li  Tian ZhaoMing  Li Pai  Zhou YuanMing  Li YunLong  Yin ShiYan
Institution:(1) Department of Physics, Huazhong University of Science and Technology, Wuhan, 430074, China
Abstract:Bulk samples with nominal composition Zn0.95Co0.05O and Zn0.92Co0.05Mn0.03O were fabricated by a solid-state reaction method at 600°C. X-ray diffraction experiment showed that the peaks of secondary phase Co3O4 with a cubic structure were visible in both samples, besides the main peaks of wurtzite structure as ZnO. Magnetization measurement indicated that doping Co alone can induce ferromagnetism in ZnO itself, while the introduction of Mn significantly enhances ferromagnetism. However, both samples showed different magnetic behavior at temperatures below 50 K. It was also noted that ferromagnetic coupling interaction was weakened due to the presence of antiferromagnetic Co3O4. Supported by the National 973 Project (Grant No. 2006CB921606) and National Natural Science Foundation of China (Grant No. 10574049)
Keywords:diluted magnetic semiconductor  ferromagnetism  magnetization
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