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dc.contributor.author Zhang F.
dc.contributor.author Oganov A.R.
dc.date.accessioned 2024-10-08T00:40:15Z
dc.date.available 2024-10-08T00:40:15Z
dc.date.issued 2006
dc.identifier https://www.elibrary.ru/item.asp?id=14545801
dc.identifier.citation Earth and Planetary Science Letters, 2006, 249, 3-4, 436-443
dc.identifier.issn 0012-821X
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/45671
dc.description.abstract Using ab initio simulations, we investigated the valence and spin states of iron impurities in the perovskite (Pv) and post-perovskite (PPv) polymorphs of MgSiO3. In agreement with the previous experimental work, we find a valence disproportionation reaction: 3Fe2+ → 2Fe3+ Fe0metal. This exothermic reaction results in the predominance of Fe3+ impurities in lower mantle silicates and produces free metallic iron. It occurs both in Pv and PPv, Al-free and Al-rich, at all lower mantle pressures. This reaction provides a possible mechanism for the growth of the Earth's core and core-mantle chemical equilibration. In the presence of Al3+, iron forms Fe3+-Al3+ coupled substitutions in Pv, but separate Fe3+-Fe3+ and Al3+-Al3+ substitutions in PPv. Only the high-spin state is found for Fe2+ impurities at all mantle pressures, while Fe3+ impurities on the Si-site are low-spin at all pressures in both phases. Fe3+ impurities on the Mg-site are in the high-spin state in PPv at all mantle pressures, but in Pv we predict a high-spin-low-spin transition. The pressure at which this transition occurs strongly depends on the Al3+ content and according to our calculations increases from 76 GPa for Al-free to 134 GPa for aluminous Pv; this reconciles many of the previous experimental results. Our findings have implications for the chemical evolution of the Earth and for the radiative conductivity and dynamics of the D" layer. © 2006 Elsevier B.V. All rights reserved.
dc.subject AB INITIO SIMULATIONS
dc.subject D" LAYER
dc.subject EARTH'S MANTLE
dc.subject PEROVSKITE
dc.subject POST-PEROVSKITE
dc.subject SPIN TRANSITIONS OF IRON
dc.subject SUBSTITUTION MECHANISM
dc.subject VALENCE STATE OF IRON
dc.title VALENCE STATE AND SPIN TRANSITIONS OF IRON IN EARTH'S MANTLE SILICATES
dc.type Статья
dc.identifier.doi 10.1016/j.epsl.2006.07.023


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