Publication | Open Access
Effect of Mechanical Boundary Conditions on Phase Diagrams of Epitaxial Ferroelectric Thin Films
1.6K
Citations
21
References
1998
Year
Phase DiagramsEngineeringMechanical Boundary ConditionsFerroelectric Thin FilmsMultiferroicsFerroelectric ApplicationCubic SubstratesQuantum MaterialsEpitaxial GrowthMaterials ScienceCrystalline DefectsPhysicsPyroelectricityBulk CrystalsCondensed Matter PhysicsApplied PhysicsFerroelectric MaterialsThermoelectric MaterialThin Films
A phenomenological thermodynamic theory of ferroelectric thin films epitaxially grown on cubic substrates is developed using a new form of the thermodynamic potential, which corresponds to the actual mechanical boundary conditions of the problem. For single-domain ${\mathrm{BaTiO}}_{3}$ and ${\mathrm{PbTiO}}_{3}$ films, the ``misfit-temperature'' phase diagrams are constructed. It is found that the 2D clamping of the films, apart from a shift of the temperature of the ferroelectric transition, results in a change of its order. A change of the sequence of the phases and the appearance of phases forbidden in the bulk crystals are predicted.
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