Tunable Magnetic Properties in Sr 2 FeReO 6 Double-Perovskite

Double-perovskite oxides have attracted recent attention due to their attractive functionalities and application potential. In this paper, we demonstrate the effect of dual controls, i.e., the deposition pressure of oxygen ( ) and lattice mismatch (ε), on tuning magnetic properties in epitaxial doub...

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Veröffentlicht in:Nano letters 2022-12, Vol.22 (24), p.9900-9906
Hauptverfasser: Zhang, Zhaoting, Yan, Hong, Huang, Zhen, Chi, Xiao, Li, Changjian, Lim, Zhi Shiuh, Zeng, Shengwei, Han, Kun, Omar, Ganesh Ji, Jin, Kexin, Ariando, Ariando
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container_end_page 9906
container_issue 24
container_start_page 9900
container_title Nano letters
container_volume 22
creator Zhang, Zhaoting
Yan, Hong
Huang, Zhen
Chi, Xiao
Li, Changjian
Lim, Zhi Shiuh
Zeng, Shengwei
Han, Kun
Omar, Ganesh Ji
Jin, Kexin
Ariando, Ariando
description Double-perovskite oxides have attracted recent attention due to their attractive functionalities and application potential. In this paper, we demonstrate the effect of dual controls, i.e., the deposition pressure of oxygen ( ) and lattice mismatch (ε), on tuning magnetic properties in epitaxial double-perovskite Sr FeReO films. In a nearly lattice matched Sr FeReO /SrTiO film, the ferrimagnetic-to-paramagnetic phase transition occurs when is reduced to 30 mTorr, probably due to the formation of Re ions that replace the stoichiometric Re to cause disorders of B-site ions. On the other hand, a large compressive strain or tensile strain shifts this critical to below 1 mTorr or above 40 mTorr, respectively. The observations can be attributed to the modulation of B-site ordering by epitaxial strain through affecting elemental valence. Our results provide a feasible way to expand the functional tunability of magnetic double-perovskite oxides that hold great promise for spintronic devices.
doi_str_mv 10.1021/acs.nanolett.2c03206
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