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Local Fe structure and ferromagnetism in Fe-doped ZnO films

机译:掺铁氧化锌薄膜中的局部铁结构和铁磁性

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for various concentrations of Fe-doped ZnO (Zn1-xFexO, x = 0-0.07) films, which are prepared on LiNbO3(104) substrates by reactive magnetron sputtering. X-ray photoelectron spectroscopy and x-ray absorption near-edge structure (XANES) reveal that, when x <= 0.04, Fe is in the 2+ state and is incorporated into the wurtzite lattice of ZnO, and as x increases further, a second phase Fe3O4 is induced. Furthermore, full multiple-scattering substitution ab initio calculation of Fe K-edge XANES is used to confirm the local structure of Fe in films with different x. The single-phase Fe-doped ZnO films (x <= 0.04) exhibit ferromagnetism above room temperature and the mechanism of bound magnetic polarons (BMPs) is proposed to discuss the magnetic properties. The presence of the second phase is responsible for the strong ferromagnetism for higher Fe concentration.
机译:各种浓度的Fe掺杂的ZnO(Zn1-xFexO,x = 0-0.07)薄膜,这些薄膜是通过反应磁控溅射在LiNbO3(104)衬底上制备的。 X射线光电子能谱和X射线吸收近边缘结构(XANES)显示,当x <= 0.04时,Fe处于2+态并结合到ZnO的纤锌矿晶格中,并且随着x的进一步增加,a第二相Fe3O4被诱导。此外,使用Fe K-edge XANES的完全多次散射取代从头算来确定具有不同x的薄膜中Fe的局部结构。单相掺铁的ZnO薄膜(x <= 0.04)在室温以上表现出铁磁性,并提出了束缚磁极化子(BMPs)的机理来讨论磁性。第二相的存在是导致较高铁浓度的强铁磁性的原因。

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