IFLP   13074
INSTITUTO DE FISICA LA PLATA
Unidad Ejecutora - UE
artículos
Título:
Magnetic ZnFe2O4 nanoferrites studied by X-ray magnetic circular dichroism and Mössbauer Spectroscopy
Autor/es:
S. J. STEWART; FIGUEROA, S. J. A.; M. B. STURLA; R. B. SCORZELLI; F. GARCIA; F. G. REQUEJO
Revista:
PHYSICA B - Condensed Matter
Editorial:
Elsevier
Referencias:
Año: 2006 p. 1 - 1
ISSN:
0921-4526
Resumen:
ZnFe2O4 nanoparticles (6 nm) were synthesized by hydrothermal methods. Subsequent mechanical treatment applied to the nanocrystalline material caused an increment of the grain size up to 13 nm. The samples were characterized by X-ray absorption spectroscopy (XAS) and X-ray magnetic circular dichroism (XMCD) at the Fe–K edge and 57Fe Mo¨ ssbauer spectroscopy. The absorption pre-edge features indicate that Fe3+ ions occupy non-centrosymmetric sites. XAS data evidence the presence of Fe3+tetrahedrally coordinated while XMCD spectra re.ect the magnetic character of the compound The Mo¨ ssbauer results show a superparamagnetic behaviour with blocking temperatures at 40 and 250K for 6 and 13nm samples, respectively. The 4.2K Mo¨ ssbauer spectra re.ect that Fe3+ ions occupy both octahedral and tetrahedral spinel sites. All these results provide consistent evidence of the high degree of inversion achieved by these combined methods, which modi.es the long-range ordering. We also demonstrated that, starting from a non-equilibrium state, an increment of the inversion activated by the milling occurs in spite of the augment of the grain size.