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Three Oxidation States of Manganese in the Barium Hexaferrite BaFe12-xMnxO19.
Nemrava, Sandra; Vinnik, Denis A; Hu, Zhiwei; Valldor, Martin; Kuo, Chang-Yang; Zherebtsov, Dmitry A; Gudkova, Svetlana A; Chen, Chien-Te; Tjeng, Liu Hao; Niewa, Rainer.
Afiliación
  • Nemrava S; University of Stuttgart , Stuttgart 70049, Germany.
  • Vinnik DA; South Ural State University , Chelyabinsk 454080, Russia.
  • Hu Z; Max-Planck-Institute for Chemical Physics of Solids , Dresden 01187, Germany.
  • Valldor M; Max-Planck-Institute for Chemical Physics of Solids , Dresden 01187, Germany.
  • Kuo CY; Max-Planck-Institute for Chemical Physics of Solids , Dresden 01187, Germany.
  • Zherebtsov DA; South Ural State University , Chelyabinsk 454080, Russia.
  • Gudkova SA; South Ural State University , Chelyabinsk 454080, Russia.
  • Chen CT; Moscow Institute of Physics and Technology (State University) , Dolgoprudny, Moscow Region 141700, Russia.
  • Tjeng LH; National Synchrotron Radiation Research Center , Hsinchu 30076, Taiwan.
  • Niewa R; Max-Planck-Institute for Chemical Physics of Solids , Dresden 01187, Germany.
Inorg Chem ; 56(7): 3861-3866, 2017 Apr 03.
Article en En | MEDLINE | ID: mdl-28290672
ABSTRACT
The coexistence of three valence states of Mn ions, namely, +2, +3, and +4, in substituted magnetoplumbite-type BaFe12-xMnxO19 was observed by soft X-ray absorption spectroscopy at the Mn-L2,3 edge. We infer that the occurrence of multiple valence states of Mn situated in the pristine purely iron(III) compound BaFe12O19 is made possible by the fact that the charge disproportionation of Mn3+ into Mn2+ and Mn4+ requires less energy than that of Fe3+ into Fe2+ and Fe4+, related to the smaller effective Coulomb interaction of Mn3+ (d4) compared to Fe3+ (d5). The different chemical environments determine the location of the differently charged ions with Mn3+ occupying positions with (distorted) octahedral local symmetry, Mn4+ ions prefer octahedrally coordinated sites in order to optimize their covalent bonding. Larger and more ionic bonded Mn2+ ions with a spherical charge distribution accumulate at tetrahedrally coordinated sites. Simulations of the experimental Mn-L2,3 XAS spectra of two different samples with x = 1.5 and x = 1.7 led to Mn2+Mn3+Mn4+ atomic ratios of 0.160.510.33 and 0.190.570.24.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Inorg Chem Año: 2017 Tipo del documento: Article País de afiliación: Alemania

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Inorg Chem Año: 2017 Tipo del documento: Article País de afiliación: Alemania