Publication | Open Access
Inverse barocaloric effects in ferroelectric BaTiO3 ceramics
81
Citations
38
References
2016
Year
Materials ScienceEngineeringFerroelectric ApplicationApplied PhysicsCeramic SamplesCeramics MaterialsFerroelectric MaterialsThermoelectricsThermoelectric MaterialStructural Phase TransitionsThermodynamicsThermal ProcessesFunctional MaterialsPrototypical Ferroelectric Batio3Inverse Barocaloric Effects
We use calorimetry to identify pressure-driven isothermal entropy changes in ceramic samples of the prototypical ferroelectric BaTiO3. Near the structural phase transitions at ∼400 K (cubic-tetragonal) and ∼280 K (tetragonal-orthorhombic), the inverse barocaloric response differs in sign and magnitude from the corresponding conventional electrocaloric response. The differences in sign arise due to the decrease in unit-cell volume on heating through the transitions, whereas the differences in magnitude arise due to the large volumetric thermal expansion on either side of the transitions.
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