Publication | Closed Access
Large and broadband piezoelectricity in smart polymer-foam space-charge electrets
162
Citations
12
References
2000
Year
EngineeringMechanical EngineeringSoft MatterConducting PolymerVibrationsPiezoelectric Resonance ModesConverse Dynamic PiezoelectricityPiezoelectric MaterialMaterials ScienceElectroactive MaterialElectrical EngineeringPiezoelectric D33 CoefficientPiezoelectric MaterialsPiezoelectricityFunctional MaterialsMicrofabricationPolymer ScienceBroadband PiezoelectricityElectrical Insulation
Charged closed-cell microporous polypropylene foams are shown to exhibit piezoelectric resonance modes in the dielectric function, coupled with a large anisotropy in the electromechanical and elastic material properties. Strong direct and converse dynamic piezoelectricity with a piezoelectric d33 coefficient of 140 pC/N at 600 kHz is identified. The piezoelectric d33 coefficient exceeds that of the ferroelectric polymer polyvinylidene fluoride by a factor of 5 and compares favorably with ferroelectric ceramics. Applications of similar concepts should provide a broad class of easily fabricated “soft” piezoelectric materials.
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