AIP Advances · 2020 · 17 citations · 17 references
Mineral PhysicX-ray SpectroscopyEngineeringMagnesium TantalateSolid-state ChemistryStructural MaterialsHigh PressureMaterials SciencePhysicsCrystal MaterialSolid MechanicsCrystallographyMicrostructureHigh-pressure Raman ScatteringNatural SciencesSpectroscopyX-ray DiffractionCondensed Matter PhysicsApplied PhysicsMagnesium-based CompositeAlloy Phase
High-pressure Raman scattering and angle dispersive synchrotron x-ray diffraction studies have been carried out on magnesium tantalate (MgTa2O6) up to 41 GPa at room temperature. A pressure-induced phase transition at pressures above 10 GPa accompanied by softening of the internal ν11 (Eg) modes has been observed. Another phase transition took place at 20.2 GPa, which indicates that the edge shared TaO6 octahedra are distorted. The equation of state for MgTa2O6 in low pressure phase I was obtained by the second-order Birch–Murnaghan method, yielding a zero-pressure bulk modulus B0 of 205.8 ± 8.4 GPa. The pressure dependencies of the lattice vibration mode were extracted, and it is suggested that the instability of the trirutile structure at high pressure is related to the strong deformation of the TaO6 octahedra. Decompression measurements suggest that the pressure-induced transformation is irreversible.
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Shanshan Chen, Yu Qi, Takashi Hisatomi et al. · Angewandte Chemie International Edition · 2015 · 294 citations
Baddeleyite-Type High-Pressure Phase of TiO <sub>2</sub>
Hiromasa Sato, S. Endo, Masashi Sugiyama et al. · Science · 1991 · 195 citations