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Coupling of the local defect and magnetic structure of wustite Fe1-xO

Abstract:
The local nuclear and magnetic structure of wüstite, Fe 1-xO, and the coupling between them, have been examined using reverse Monte Carlo refinements of variable-temperature neutron total scattering data. The results from this analysis suggest that the individual units in a tetrahedral defect cluster are connected along 〈110â Œ vectors into a Koch-Cohen-like arrangement, with the majority of octahedral vacancies concentrated near these defects. Bond valence calculations indicate a change in the charge distribution on the cations with the charge on the tetrahedral interstitials increasing on cooling. The magnetic structure is more complex than previously thought, corresponding to a noncollinear spin arrangement described by a superposition of a condensed spin wave on the established type-II antiferromagnetic ordering. This leads to an architecture with four groups of cations, each with different spin directions. The cations within the interstitial clusters appear to be weakly ferromagnetically coupled, and their spins are correlated to the spins of the octahedral cations closest to them. This work not only provides further insight into the local structure of wüstite but also enables a better understanding of the coupling between defect structures and magnetic and charge ordering in complex materials. © 2013 American Physical Society.
Publication status:
Published

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Publisher copy:
10.1103/PhysRevB.88.134418

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Institution:
University of Oxford
Division:
MPLS
Department:
Chemistry
Sub department:
Inorganic Chemistry
Role:
Author


Journal:
Physical Review B More from this journal
Volume:
88
Issue:
13
Publication date:
2013-10-18
DOI:
EISSN:
1550-235X
ISSN:
1098-0121


Language:
English
Pubs id:
pubs:439375
UUID:
uuid:0bc72045-6622-4f62-8bef-be80c45d6198
Local pid:
pubs:439375
Source identifiers:
439375
Deposit date:
2013-12-13
ARK identifier:

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