Publication | Closed Access
Large Electrocaloric Effect in Ferroelectric Materials
17
Citations
30
References
2014
Year
Materials ScienceElectrocaloric EffectElectrical EngineeringElectroactive MaterialEngineeringFerroelectric ApplicationPolar MaterialsFerroelectric MaterialsThermoelectricsThermoelectric MaterialLarge Electrocaloric EffectPyroelectricityFunctional MaterialsBatio3 CrystalElectrochemistry
The electrocaloric effect (ECE) in polar materials shows great potential in realizing high efficient solid-state cooling devices with a smaller size and high efficiency. The thermodynamic theory was introduced in order to achieve a large ECE in ferroelectrics. The previous experimental researches were reviewed and discussed. A novel method to directly measure the ECE entropy change and temperature change was developed. Results indi- cated that the relaxor ferroelectric polymers and first-order phase transition polymers demonstrated larger ECE. Recently published larger electrocaloric effect in BaTiO3 crystal and multilayer ceramic capacitors, and the proto- type ferroelectric cooling devices reveal attractive application prospects in the near future.
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