Crystalline Magnetic Anisotropy in High Entropy (Fe, Co, Ni, Cr, Mn)3O4 Oxide Driven by Single-Element Orbital Anisotropy

被引:7
|
作者
Ke, Wei-En [1 ]
Chen, Jia-Wei [1 ]
Liu, Cheng-En [2 ]
Ku, Yu-Chieh [2 ]
Chang, Chun-Fu [3 ]
Shafer, Padraic [4 ]
Lin, Shi-Jie [5 ]
Chu, Ming-Wen [5 ]
Chen, Yi-Cheng [6 ]
Yeh, Jien-Wei [6 ]
Kuo, Chang-Yang [1 ,7 ]
Chu, Ying-Hao [1 ,6 ]
机构
[1] Natl Yang Ming Chiao Tung Univ, Dept Mat Sci & Engn, Hsinchu 30010, Taiwan
[2] Natl Yang Ming Chiao Tung Univ, Dept Electrophys, Hsinchu 30010, Taiwan
[3] Max Planck Inst Chem Phys Solids, D-01187 Dresden, Germany
[4] Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
[5] Natl Taiwan Univ, Ctr Condensed Matter Sci, Taipei 10617, Taiwan
[6] Natl Tsing Hua Univ, Dept Mat Sci & Engn, Hsinchu 30013, Taiwan
[7] Natl Synchrotron Radiat Res Ctr, Hsinchu 30076, Taiwan
关键词
high entropy oxide; magnetic anisotropy; X-ray absorption spectroscopy; MICROSTRUCTURE; ALLOY;
D O I
10.1002/adfm.202312856
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The design of multicomponent materials has captured considerable attention due to its extraordinary ability to tailor functional properties. However, how a single element affects the behavior of the overall material has yet to be explored in depth. In this study, the heteroepitaxy of high entropy (Fe, Co, Ni, Cr, Mn)(3)O-4 films with varying strain states are investigated in magnetic performance. It is discovered that the high entropy oxide thin film with compressive strain exhibits an effect of crystalline magnetic anisotropy. Diverse analyses provide a detailed understanding of high entropy magnetic oxide systems, including X-ray diffraction, reciprocal space mapping, macroscopic magnetic characterization, X-ray absorption spectroscopy (XAS), etc. Notably, the element-specific XAS technique proves effective in uncovering the origin of the crystalline magnetic anisotropy. Due to the substrate-induced epitaxial strain, the e(g) orbitals of Mn3+ form different energy levels, leading to different preferred electron occupancy. The exploration of magnetic properties in epitaxial high entropy oxide film is then raveled. By navigating the complexities introduced by the random atom distribution and intricate magnetic interactions, this study pioneers novel methodologies for probing the core physics of high entropy oxides.
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页数:9
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