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阳离子有序化及其对在掺铌SrTiO(001)上通过反应性固相外延制备的富钴钴铁氧体薄膜磁性能的影响。

Cationic Ordering and Its Influence on the Magnetic Properties of Co-Rich Cobalt Ferrite Thin Films Prepared by Reactive Solid Phase Epitaxy on Nb-Doped SrTiO(001).

作者信息

Thien Jannis, Bahlmann Jascha, Alexander Andreas, Ruwisch Kevin, Rodewald Jari, Pohlmann Tobias, Hoppe Martin, Alarslan Fatih, Steinhart Martin, Altuncevahir Baki, Shafer Padraic, Meyer Carola, Bertram Florian, Wollschläger Joachim, Küpper Karsten

机构信息

Department of Physics, Osnabrück University, 49076 Osnabrück, Germany.

Deutsches Elektronen-Synchrotron (DESY), Photon Science, 22607 Hamburg, Germany.

出版信息

Materials (Basel). 2021 Dec 22;15(1):46. doi: 10.3390/ma15010046.

Abstract

Here, we present the (element-specific) magnetic properties and cation ordering for ultrathin Co-rich cobalt ferrite films. Two Co-rich CoxFe3-xO4 films with different stoichiometry (x=1.1 and x=1.4) have been formed by reactive solid phase epitaxy due to post-deposition annealing from epitaxial CoO/Fe3O4 bilayers deposited before on Nb-doped SrTiO3(001). The electronic structure, stoichiometry and homogeneity of the cation distribution of the resulting cobalt ferrite films were verified by angle-resolved hard X-ray photoelectron spectroscopy. From X-ray magnetic circular dichroism measurements, the occupancies of the different sublattices were determined using charge-transfer multiplet calculations. For both ferrite films, a partially inverse spinel structure is found with increased amount of Co3+ cations in the low-spin state on octahedral sites for the Co1.4Fe1.6O4 film. These findings concur with the results obtained by superconducting quantum interference device measurements. Further, the latter measurements revealed the presence of an additional soft magnetic phase probably due to cobalt ferrite islands emerging from the surface, as suggested by atomic force microscope measurements.

摘要

在此,我们展示了富钴超薄钴铁氧体薄膜的(元素特异性)磁性和阳离子有序性。通过对之前沉积在掺铌 SrTiO₃(001) 上的外延 CoO/Fe₃O₄ 双层膜进行沉积后退火,利用反应性固相外延法形成了两种具有不同化学计量比(x = 1.1 和 x = 1.4)的富钴 CoxFe₃₋ₓO₄ 薄膜。通过角分辨硬 X 射线光电子能谱验证了所得钴铁氧体薄膜的电子结构、化学计量比和阳离子分布的均匀性。通过 X 射线磁圆二色性测量,使用电荷转移多重态计算确定了不同亚晶格的占有率。对于这两种铁氧体薄膜,发现 Co₁.₄Fe₁.₆O₄ 薄膜在八面体位置上低自旋态的 Co³⁺ 阳离子数量增加,呈现出部分反尖晶石结构。这些发现与超导量子干涉器件测量结果一致。此外,后一种测量揭示了可能存在额外的软磁相,这可能是由于原子力显微镜测量所表明的表面出现的钴铁氧体岛所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cca7/8746195/e9c8e41ae509/materials-15-00046-g001.jpg

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