4.4 Article

Ferromagnetic behaviour of Fe-doped ZnO nanograined films

期刊

BEILSTEIN JOURNAL OF NANOTECHNOLOGY
卷 4, 期 -, 页码 361-369

出版社

BEILSTEIN-INSTITUT
DOI: 10.3762/bjnano.4.42

关键词

Fe; ferromagnetism; grain boundaries; ZnO

资金

  1. Russian Foundation for Basic Research [11-03-00029, 11-08-90439, 12-08-31185]

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The influence of the grain boundary (GB) specific area s(GB) on the appearance of ferromagnetism in Fe-doped ZnO has been analysed. A review of numerous research contributions from the literature on the origin of the ferromagnetic behaviour of Fe-doped ZnO is given. An empirical correlation has been found that the value of the specific grain boundary area s(GB) is the main factor controlling such behaviour. The Fe-doped ZnO becomes ferromagnetic only if it contains enough GBs, i.e., if s(GB) is higher than a certain threshold value s(th) = 5 x 10(4) m(2)/m(3). It corresponds to the effective grain size of about 40 mu m assuming a full, dense material and equiaxial grains. Magnetic properties of ZnO dense nanograined thin films doped with iron (0 to 40 atom %) have been investigated. The films were deposited by using the wet chemistry liquid ceramics method. The samples demonstrate ferromagnetic behaviour with J(s) up to 0.10 emu/g (0.025 mu B/f.u.ZnO) and coercivity H-c approximate to 0.03 T. Saturation magnetisation depends nonmonotonically on the Fe concentration. The dependence on Fe content can be explained by the changes in the structure and contiguity of a ferromagnetic grain boundary foam responsible for the magnetic properties of pure and doped ZnO.

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