Recent discovery of the pyrite FeO2, which can be an important ingredient of the Earth's lower mantle and which in particular may serve as an extra source of water in the Earth's interior, opens new perspectives for geophysics and geochemistry, but this is also an extremely interesting material from physical point of view. We found that in contrast to naive expectations Fe is nearly 3+ in this material, which strongly affects its magnetic properties and makes it qualitatively different from well known sulfide analogue - FeS2. Doping, which is most likely to occur in the Earth's mantle, makes FeO2 much more magnetic. In addition we show that unique electronic structure places FeO2 in between the usual dioxides and peroxides making this syste...
[1] The electronic spin and valence states of Fe in post‐ perovskite ((Mg0.75Fe0.25)SiO3) have been ...
Extreme pressures and temperatures are known to drastically affect the chemistry of iron oxides, res...
The electronic and magnetic properties of recently discovered important constituent of the earth's l...
Recent discovery of the pyrite FeO2, which can be an important ingredient of the Earth's lower mantl...
The discovery of FeO2 containing more oxygen than hematite (Fe2O3), which was previously believed to...
International audienceRecent experiments have demonstrated the existence of previously unknown iron ...
International audienceExtreme pressures and temperatures are known to drastically affect the chemist...
Iron oxide is a key compound to understand the state of the deep Earth. It has been believed that pr...
Recent studies have shown that high pressure (P) induces the metallization of the Fe[superscript 2+]...
Extreme pressures and temperatures are known to drastically affect the chemistry of iron oxides, res...
We report that iron sulphide mineral products of different compositions and oxidation states are pro...
Fe2+ in pyrite is found in a low-spin d(6) configuration, a necessary condition for diamagnetic and ...
Although chemically very simple, Fe$_{2}$O$_{3}$is known to undergo a series of enigmatic structura...
Magnetite, Fe$_3$O$_4$, is the oldest known magnetic mineral and archetypal mixed-valence oxide. Des...
Recent discoveries of various novel iron oxides and hydrides, which become stable at very high press...
[1] The electronic spin and valence states of Fe in post‐ perovskite ((Mg0.75Fe0.25)SiO3) have been ...
Extreme pressures and temperatures are known to drastically affect the chemistry of iron oxides, res...
The electronic and magnetic properties of recently discovered important constituent of the earth's l...
Recent discovery of the pyrite FeO2, which can be an important ingredient of the Earth's lower mantl...
The discovery of FeO2 containing more oxygen than hematite (Fe2O3), which was previously believed to...
International audienceRecent experiments have demonstrated the existence of previously unknown iron ...
International audienceExtreme pressures and temperatures are known to drastically affect the chemist...
Iron oxide is a key compound to understand the state of the deep Earth. It has been believed that pr...
Recent studies have shown that high pressure (P) induces the metallization of the Fe[superscript 2+]...
Extreme pressures and temperatures are known to drastically affect the chemistry of iron oxides, res...
We report that iron sulphide mineral products of different compositions and oxidation states are pro...
Fe2+ in pyrite is found in a low-spin d(6) configuration, a necessary condition for diamagnetic and ...
Although chemically very simple, Fe$_{2}$O$_{3}$is known to undergo a series of enigmatic structura...
Magnetite, Fe$_3$O$_4$, is the oldest known magnetic mineral and archetypal mixed-valence oxide. Des...
Recent discoveries of various novel iron oxides and hydrides, which become stable at very high press...
[1] The electronic spin and valence states of Fe in post‐ perovskite ((Mg0.75Fe0.25)SiO3) have been ...
Extreme pressures and temperatures are known to drastically affect the chemistry of iron oxides, res...
The electronic and magnetic properties of recently discovered important constituent of the earth's l...