Electrochemical manipulation of spin reorientation in FePO4 by Li-ion intercalation

被引:0
作者
Tsevelmaa, T. [1 ]
Ochirkhuyag, T. [2 ]
Tuvshin, D. [2 ]
Hong, S. C. [1 ]
Odkhuu, D. [2 ]
机构
[1] Univ Ulsan, Dept Phys, Ulsan 44610, South Korea
[2] Incheon Natl Univ, Dept Phys, Incheon 22012, South Korea
关键词
Li-ion battery; Magnetocrystalline anisotropy; Density functional theory; Lithiation/delithiation; DENSITY-FUNCTIONAL THEORY; MAGNETIC-PROPERTIES; LITHIUM-ION; CRYSTAL-CHEMISTRY; ROOM-TEMPERATURE; PHOSPHO-OLIVINES; SOLID-SOLUTION; LIFEPO4; LIXFEPO4; BATTERY;
D O I
10.1016/j.jmmm.2023.171143
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Density functional theory plus U and Monte Carlo simulations reveal that the electrochemical lithiation/delithiation process has a dramatic effect on magnetic structure and magnetocrystalline anisotropy (MCA) of an olivine LixFePO4 (0 <= x <= 1) structure. We demonstrate that MCA undergoes a transition from the magnetic easy axis along the [100] direction for FePO4 (fully delithiated phase) to the [010] direction for the partially and fully lithiated phases of LixFePO4 with x >= 0.25. This magnetization reorientation is the result of the interplay between the lithiation/delithiation induced changes in the spin-orbit coupled 3d-electron orbital states near the Fermi level and the high-spin crystal field split of the Fe3+ and Fe2+ ionic states. Furthermore, the lithium intercalation substantially reduces the energy deviation of an antiferromagnetic state from a ferromagnetic phase, reflecting the experimental observation of lowering the Neel temperature from 125 K for FePO4 to 52 K for LiFePO4, which are fairly reproduced by the Monte Carlo simulation. These findings open interesting prospects for exploiting electrochemical lithiation/delithiation process to manipulate magnetization direction in antiferromagnet spintronics.
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页数:9
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共 67 条
[1]   BAND THEORY AND MOTT INSULATORS - HUBBARD-U INSTEAD OF STONER-I [J].
ANISIMOV, VI ;
ZAANEN, J ;
ANDERSEN, OK .
PHYSICAL REVIEW B, 1991, 44 (03) :943-954
[2]   DENSITY-FUNCTIONAL THEORY AND NIO PHOTOEMISSION SPECTRA [J].
ANISIMOV, VI ;
SOLOVYEV, IV ;
KOROTIN, MA ;
CZYZYK, MT ;
SAWATZKY, GA .
PHYSICAL REVIEW B, 1993, 48 (23) :16929-16934
[3]   Constrained Monte Carlo method and calculation of the temperature dependence of magnetic anisotropy [J].
Asselin, P. ;
Evans, R. F. L. ;
Barker, J. ;
Chantrell, R. W. ;
Yanes, R. ;
Chubykalo-Fesenko, O. ;
Hinzke, D. ;
Nowak, U. .
PHYSICAL REVIEW B, 2010, 82 (05)
[4]   Electronic structure of phospho-olivines LixFePO4 (x=0,1) from soft-x-ray-absorption and -emission spectroscopies -: art. no. 184717 [J].
Augustsson, A ;
Zhuang, GV ;
Butorin, SM ;
Osorio-Guillén, JM ;
Dong, CL ;
Ahuja, R ;
Chang, CL ;
Ross, PN ;
Nordgren, J ;
Guo, JH .
JOURNAL OF CHEMICAL PHYSICS, 2005, 123 (18)
[5]   A NOVEL MAGNETIC PHASE-TRANSITION IN ANHYDROUS IRON(III) PHOSPHATE, FEPO4 [J].
BATTLE, PD ;
CHEETHAM, AK ;
GLEITZER, C ;
HARRISON, WTA ;
LONG, GJ ;
LONGWORTH, G .
JOURNAL OF PHYSICS C-SOLID STATE PHYSICS, 1982, 15 (26) :L919-L924
[6]   Conductivity improvements to spray-produced LiFePO4 by addition of a carbon source [J].
Bewlay, SL ;
Konstantinov, K ;
Wang, GX ;
Dou, SX ;
Liu, HK .
MATERIALS LETTERS, 2004, 58 (11) :1788-1791
[7]  
Blaha P., 2018, WIEN2K AUGMENTED PLA
[8]   PROJECTOR AUGMENTED-WAVE METHOD [J].
BLOCHL, PE .
PHYSICAL REVIEW B, 1994, 50 (24) :17953-17979
[9]   Fe Spin Reorientation across the Metamagnetic Transition in Strained FeRh Thin Films [J].
Bordel, C. ;
Juraszek, J. ;
Cooke, David W. ;
Baldasseroni, C. ;
Mankovsky, S. ;
Minar, J. ;
Ebert, H. ;
Moyerman, S. ;
Fullerton, E. E. ;
Hellman, F. .
PHYSICAL REVIEW LETTERS, 2012, 109 (11)
[10]   Electrochemical and structural study of LiCoPO4-based electrodes [J].
Bramnik, NN ;
Bramnik, KG ;
Buhrmester, T ;
Baehtz, C ;
Ehrenberg, H ;
Fuess, H .
JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2004, 8 (08) :558-564