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  Cation site occupancy of biogenic magnetite compared to polygenic ferrite spinels determined by X-ray magnetic circular dichroism

Coker, V. S., Pearce, C. I., Lang, C., van der Laan, G., Pattrick, R. A. D., Telling, N. D., et al. (2007). Cation site occupancy of biogenic magnetite compared to polygenic ferrite spinels determined by X-ray magnetic circular dichroism. European Journal of Mineralogy, 19(5), 707-716.

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Coker, V. S., Autor
Pearce, C. I., Autor
Lang, C.1, Autor           
van der Laan, G., Autor
Pattrick, R. A. D., Autor
Telling, N. D., Autor
Schüler, D.1, Autor           
Arenholz, E., Autor
Lloyd, J. R., Autor
Affiliations:
1Department of Microbiology, Max Planck Institute for Marine Microbiology, Max Planck Society, ou_2481695              

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Schlagwörter: X-ray magnetic circular dichroism; XMCD; nanoparticles; metal reduction; Fe(III) reduction; Geobacter; biomineralogy; biogenic magnetite
 Zusammenfassung: Ferrite spinels, especially magnetite (Fe3O4), can be formed either by geological, biological or chemical processes leading to chemically similar phases that show different physical characteristics. We compare, for the first time, magnetite produced by these three different methods using X-ray magnetic circular dichroism (XMCD), a synchrotron radiation based technique able to determine the site occupancy of Fe cations in the ferrite spinels. Extracellular nanoscale magnetite produced by different Fe(III)-reducing bacteria was shown to have different degrees of stoichiometry depending on the bacteria and the method of formation, but all were oxygen deficient due to formation under anoxic conditions. Intracellular nano-magnetite synthesized in the magnetosomes of magnetotactic bacteria was found to have a Fe cation site occupancy ratio most similar to stoichiometric magnetite, possibly due to the tight physiological controls exerted by the magnetosome membrane. Chemically-synthesised nano-magnetite and bulk magnetite produced as a result of geological processes were both found to be cation deficient with a composition between magnetite and maghemite (oxidised magnetite).

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Sprache(n): eng - English
 Datum: 2007-092007-11-07
 Publikationsstatus: Erschienen
 Seiten: 10
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: Expertenbegutachtung
 Identifikatoren: eDoc: 343252
ISI: 000252000400010
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Titel: European Journal of Mineralogy
  Andere : Eur. J. Mineral.
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: Stuttgart : E. Schweizerbart'sche Verlagsbuchhandlung (Nägele u. Obermiller)
Seiten: - Band / Heft: 19 (5) Artikelnummer: - Start- / Endseite: 707 - 716 Identifikator: ISSN: 0935-1221
CoNE: https://pure.mpg.de/cone/journals/resource/954928484268