The crystal structure of Fe2SiO4 spinel at room temperature was investigated at seven different pressures by X-ray diffraction, using a diamond anvil cell to examine the influence of Fe substitution on ringwoodite behaviour at high pressure. The results compared with those of a pure Mg endmember show that the substitution of Fe into the spinel structure causes only small changes in the compression rate of coordination polyhedra and the distortion of the octahedron. The data show that the compression rate for the octahedron and tetrahedron in (Mg,Fe)2SiO4 can be considered statistically equal for FeO6 and MgO6, as well as for SiO4 in both the endmembers. This shows why almost identical bulk moduli are reported along the solid solution in rec...
The behaviour of synthetic Mg-ferrite (MgFe2O4) has been investigated at high pressure (in situ high...
Spinels are not only a very important mineral phase present in a great variety of environment from t...
A non-stoichiometric sample of spinel with composition T(Mg0.4Al0.6)M(Al1.8h0.2)O4 was investigated ...
The crystal structure of Fe2SiO4 spinel at room temperature was investigated at seven different pres...
The equation of state for gamma-Fe2SiO4 was determined by single-crystal X-ray diffraction up to 10....
Thirteen energy-dispersive x-ray diffraction spectra for γ-Fe2SiO4 (spinel) collected in situ at 400...
Experiments in the system Mg2SiO4–Fe2SiO4–Fe3O4 produced three spinelloid polytypes that are stable ...
Olivine is a relatively loose structure. At low pressure it is stable because unshared octahedral ed...
A non-stoichiometric sample of spinel with composition T(Mg0.4Al0.6)M(Al1.8h0.2)O4 was investigated ...
The equation of state and the crystal structure evolution with pressure were determined for two sing...
The equation of state and the structural behavior of synthetic MgAl2O4 have been investigated using ...
We have studied the behaviour of the cubic spinel structure of FeV2O4 under high-pressure by means o...
International audienceWe have investigated the high-pressure behavior of Fe3O4 by in situ X-ray diff...
Structure data of MgFe2O4 high-pressure phase determined by the Rietveld refinement
Magnetic, electronic, and structural properties of $MFe_{2}O_{4}$ (M=Mg,Zn,Fe) ferric spinels have b...
The behaviour of synthetic Mg-ferrite (MgFe2O4) has been investigated at high pressure (in situ high...
Spinels are not only a very important mineral phase present in a great variety of environment from t...
A non-stoichiometric sample of spinel with composition T(Mg0.4Al0.6)M(Al1.8h0.2)O4 was investigated ...
The crystal structure of Fe2SiO4 spinel at room temperature was investigated at seven different pres...
The equation of state for gamma-Fe2SiO4 was determined by single-crystal X-ray diffraction up to 10....
Thirteen energy-dispersive x-ray diffraction spectra for γ-Fe2SiO4 (spinel) collected in situ at 400...
Experiments in the system Mg2SiO4–Fe2SiO4–Fe3O4 produced three spinelloid polytypes that are stable ...
Olivine is a relatively loose structure. At low pressure it is stable because unshared octahedral ed...
A non-stoichiometric sample of spinel with composition T(Mg0.4Al0.6)M(Al1.8h0.2)O4 was investigated ...
The equation of state and the crystal structure evolution with pressure were determined for two sing...
The equation of state and the structural behavior of synthetic MgAl2O4 have been investigated using ...
We have studied the behaviour of the cubic spinel structure of FeV2O4 under high-pressure by means o...
International audienceWe have investigated the high-pressure behavior of Fe3O4 by in situ X-ray diff...
Structure data of MgFe2O4 high-pressure phase determined by the Rietveld refinement
Magnetic, electronic, and structural properties of $MFe_{2}O_{4}$ (M=Mg,Zn,Fe) ferric spinels have b...
The behaviour of synthetic Mg-ferrite (MgFe2O4) has been investigated at high pressure (in situ high...
Spinels are not only a very important mineral phase present in a great variety of environment from t...
A non-stoichiometric sample of spinel with composition T(Mg0.4Al0.6)M(Al1.8h0.2)O4 was investigated ...