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Structural and Magnetic Properties of Yttrium and Lanthanum-doped Ni-Co and Ni-Co-Zn Spinel Ferrites

机译:钇和镧掺杂Ni-Co和Ni-Co-Zn Spinel铁氧体的结构和磁性

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Rare earth doping of Co-rich spinel ferrites is investigated through the preparation of two groups of polycrystalline Ni-Co and Ni-Co-Zn ferrites, where Fe is partly substituted by Y and La. The characterization of the sintered ferrites by means of X-ray powder diffraction and Rietveld profile analysis, indicates the subtle expansion of the spinel unit cell and the cation redistribution in the doped ferrites in order to accommodate the incorporation of Y and La in the lattice. The impurity traces, detected only in the Ni-Co-Zn group, is ascribed to the Zn population in the tetrahedral A-sites impeding the cation transfer. Moreover, the examined microstructure of the doped Ni-Co samples comprises enlarged and more homogeneous grains, whereas grain growth is moderated in the doped Ni-Co-Zn ferrites. The discussed characteristics of the crystal and magnetic structure along with the morphological aspects define the impact of Y and La doping on the static magnetic properties of Ni-Co and Ni-Co-Zn ferrites, saturation magnetization M_S and coercivity H_C, which were extracted from the respective hysteresis loops.
机译:通过制备两组多晶Ni-Co和Ni-Co-Zn铁氧体来研究共同富含尖晶石铁氧体的稀土掺杂,其中Fe由Y和La部分取代。通过X逐个表征烧结铁氧体-Ray粉末衍射和Rietveld型材分析,表明尖晶石单元电池的微妙膨胀和掺杂铁氧体中的阳离子再分布,以适应晶格中的Y和La。仅在Ni-Co-Zn组中检测到杂质痕迹,其归因于阻碍阳离子转移的四面体A-位点中的Zn群。此外,掺杂的Ni-Co样品的检查微观结构包括扩大和更均匀的晶粒,而晶粒生长在掺杂的Ni-Co-Zn铁氧体中进行了调节。讨论的晶体和磁性结构的特性以及形态学方面限定了Y和La掺杂对Ni-Co和Ni-Co-Zn铁氧体,饱和磁化强度M_S和矫顽力H_C的影响,从而提取相应的滞后环。

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