Publication | Open Access
Structural and elastic properties of barium chalcogenides (BaX, X=O, Se, Te) under high pressure
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References
2008
Year
EngineeringChemistryInorganic MaterialHigh PressureCovalency EffectMaterial PhysicMaterials ScienceInorganic ChemistryPhysical ChemistryCrystallographyCrystal Structure DesignTransition Metal ChalcogenidesMaterial AnalysisPhase EquilibriumApplied PhysicsCondensed Matter PhysicsCovalency EffectsElastic PropertiesBarium ChalcogenidesPhase Transition Pressures
Abstract In the present paper we have investigated the high-pressure, structural phase transition of Barium chalcogenides (BaO, BaSe and BaTe) using a three-body interaction potential (MTBIP) approach, modified by incorporating covalency effects. Phase transition pressures are associated with a sudden collapse in volume. The phase transition pressures and associated volume collapses obtained from TBIP show a reasonably good agreement with experimental data. Here, the transition pressure, NaCl-CsCl structure increases with decreasing cation-to-anion radii ratio. In addition, the elastic constants and their combinations with pressure are also reported. It is found that TBP incorporating a covalency effect may predict the phase transition pressure, the elastic constants and the pressure derivatives of other chalcogenides as well.
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