材料科学
驻极体
压电
复合材料
铁电性
偶极子
压电系数
电场
聚四氟乙烯
传感器
光电子学
声学
电介质
物理
量子力学
有机化学
化学
作者
Ningzhen Wang,Mohamadreza Arab Baferani,Robert A. Daniels,Chao Wu,Jindong Huo,Jan van Turnhout,Gregory A. Sotzing,Reimund Gerhard,Yang Cao
标识
DOI:10.1088/1361-6463/ad1a84
摘要
Abstract Multi-layer ferroelectrets consisting of fluoroethylenepropylene (FEP) copolymer and open-porous expanded polytetrafluoroethylene (ePTFE) films exhibit stable internal electret charges, high piezoelectric coefficients and heat resistance, making them promising candidates for wearable sensors or nanogenerators in body-area networks. Here, three- and five-layer (FEP/ePTFE/FEP and FEP/ePTFE/FEP/ePTFE/FEP) ferroelectret stacks were laminated and poled in a corona discharge. The resulting charge distributions were measured by use of the pulsed electro-acoustic (PEA) method and revealed that charges of opposite polarity were trapped at the interfaces between the FEP and ePTFE layers. Thus, the existence of one macro-dipole in the three-layer structure and of two macro-dipoles in the five-layer structure was directly shown for the first time. Moreover, electric-displacement- versus- electric-field ( D-E ) loops revealed that remnant polarization is given by the number of macro-dipoles in the respective stack. Due to the addition of the macro-dipoles, the piezoelectric d 33 coefficient of the FEP/ePTFE/FEP/ePTFE/FEP stack reaches 200 pC/N even under a potentially non-uniform compression of the soft ePTFE layers. The results should be useful for a better understanding and a performance optimization of ferroelectrets in self-powered intelligent devices.
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