Structural and Mossbauer studies of nanocrystalline Mn4+-doped Li0.5Fe2.5O4 particles prepared by mechanical milling

被引:3
|
作者
Widatallah, H. M. [1 ]
Al-Mabsali, F. N. [1 ]
Al-Hajri, F. S. [1 ]
Khalifa, N. O. [2 ]
Gismelseed, A. M. [1 ]
Al-Rawas, A. D. [1 ]
Elzain, M. [1 ]
Yousif, A. [1 ]
机构
[1] Sultan Qaboos Univ, Coll Sci, Dept Phys, POB 36, Muscat 123, Oman
[2] Univ Khartoum, Dept Phys, Fac Sci, POB 321, Khartoum 11115, Sudan
来源
HYPERFINE INTERACTIONS | 2016年 / 237卷
关键词
Lithium ferrites; Defects; Nanoparticles; Mossbauer spectroscopy; XRD; MAGNETIC-PROPERTIES; LITHIUM; LIFE5O8;
D O I
10.1007/s10751-016-1290-9
中图分类号
O64 [物理化学(理论化学)、化学物理学]; O56 [分子物理学、原子物理学];
学科分类号
070203 ; 070304 ; 081704 ; 1406 ;
摘要
The structure and magnetic properties of spinel-related Mn4+-doped Li0.5Fe2.5O4 nanocrystalline particles of the composition Li0.5Fe2.25Mn0.1875O4, prepared by milling a pristine sample for different times, were investigated. The average crystallite and particle size, respectively, decreased form similar to 40 nm to similar to 10 nm and similar to 2.5 mu m to similar to 10 nm with increasing milling time from 0 h to 70 h. Rietveld refinement of the XRD data of the non-milled sample show the Mn4+ dopant ions to substitute for Fe3+ at the octahedral B-sites of the spinel-related structure. The Mossbauer spectra of the milled ferrites indicate that more particles turn superparamagnetic with increasing milling time. The M " ossbauer data collected at 78 K suggest that while in the non-milled sample the Mn4+ ions substitute for Fe3+ at the octahedral B-sites, this is reversed as milling proceeds with doped Mn4+ ions, balancing Fe3+ vacancies and possibly Li+ ions progressively migrate to the tetrahedral A-sites. This is supported by the slight increase observed in the magnetization of the milled samples relative to that of the non-milled one. The magnetic data suggest that in addition to the increasing superparamagentic component of the milled particles, thermal spin reversal and/ or spin canting effects are possible at the surface layers of the nanoparticles.
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页数:10
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