An in-situ study of cubanite, CuFe 2 S 3 , was performed in a diamond-anvil cell using Mossbauer spectroscopy and energy-dispersive X-ray diffraction at room temperature and pressures up to 5 GPa. Mossbauer spectra of orthorhombic cubanite show a single Fe site with rapid electron transfer between Fe 2+ and Fe 3+ , a hyperfine magnetic field that is relatively insensitive to pressure, and a center shift that decreases with pressure because of increasing covalency. A phase transition occurs above 3.3 GPa that involves a change from the orthorhombic cubanite structure to a derivative of the hexagonal NiAs (B8) structure, with a zero-pressure volume decrease of 29%. The large difference in volume is caused by a change from tetrahedral to octahedral coordination and a significant shortening of metal-metal bonds. Volume-compression data were fitted to a second-order Birch- Murnaghan equation of state (K′ 0 = 4) with the results K 0 = 64 ± 3 GPa (orthorhombic phase) and K 0 = 157 ± 16 GPa (high-pressure phase). Mossbauer data of the high-pressure phase indicate a single Fe site with no magnetic ordering and a valence intermediate between Fe 2+ nd Fe 3+ . Consideration of likely ordering patterns in the high-pressure phase indicates that localized electron transfer could occur along face-shared pairs of Fe octahedra, and extended electron delocalization could occur along paths formed by faceand edge-shared octahedra.
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Publicly AvailableEquation of state, bonding character, and phase transition of cubanite, CuFe2S3, studied from 0 to 5 GPaNovember 13, 2015
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Publicly AvailableA transitional structural state and anomalous Fe-Mg order-disorder in Mg-rich orthopyroxene, (Mg0.75Fe0.25)2Si2O6November 13, 2015
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Publicly AvailableCrystal chemistry of the monazite and xenotime structuresNovember 13, 2015
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Publicly AvailableSpectroscopy of the cation distribution in the schorlomite species of garnetNovember 13, 2015
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Publicly AvailableSolid-state MAS NMR study of pentameric aluminosilicate groups with 180° intertetrahedral AI-Q-Si angles in zunyite and harkeriteNovember 13, 2015
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Publicly AvailableImpedance spectra of hot, dry silicate minerals and rock: Qualitative interpretation of spectraNovember 13, 2015
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Publicly AvailableDozyite, a 1:1 regular interstratification of serpentine and chloriteNovember 13, 2015
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Publicly AvailableEpitaxial replacement of kyanite by staurolite: A TEM study of the microstructuresNovember 13, 2015
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Publicly AvailableTransmission electron microscopy study of optically anisotropic and isotropic haüyneNovember 13, 2015
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Publicly AvailableH2O solubility in haplogranitic melts: Compositional, pressure, and temperature dependenceNovember 13, 2015
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Publicly AvailableC-Q-H speciation in piston-cylinder experimentsNovember 13, 2015
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Publicly AvailableCa-rich carbonate melts: A regular-solution model, with applications to carbonatite magma + vapor equilibria and carbonate lavas on VenusNovember 13, 2015
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Publicly AvailableSignificance of pyroxene megacrysts for massif anorthosite petrogenesis: Constraints from the Labrieville, Quebec, plutonNovember 13, 2015
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Publicly AvailableK-poor titanian fluor-richterite from near Nullagine, Western AustraliaNovember 13, 2015
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Publicly AvailableCrystal structure of minehillite: Twinning and structural relationships to reyeriteNovember 13, 2015
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Publicly AvailableArtroeite, PbAIF3(OH)2, a new mineral from the Grand Reef mine, Graham County, Arizona: Description and crystal structureNovember 13, 2015
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Publicly AvailableNew Mineral NamesNovember 13, 2015
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Publicly AvailableMemorial of Oleg von Knorring 1915-1994November 13, 2015
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Publicly AvailableMemorial of Alvin Van Valkenburg, Jr., 1913-1991November 13, 2015
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Publicly AvailableMemorial of Richard Conrad Emmons 1898-1993November 13, 2015