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      The negative piezoelectric effect of the ferroelectric polymer poly(vinylidene fluoride)

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          Abstract

          Piezoelectricity describes interconversion between electrical charge and mechanical strain. As expected for lattice ions displaced in an electric field, the proportionality constant is positive for all piezoelectric materials. The exceptions are poly(vinylidene fluoride) (PVDF) and its copolymers with trifluoroethylene (P(VDF-TrFE)), which exhibit a negative longitudinal piezoelectric coefficient. Reported explanations exclusively consider contraction with applied electric field of either the crystalline or the amorphous part of these semi-crystalline polymers. To distinguish between these conflicting interpretations, we have performed in situ dynamic X-ray diffraction measurements on P(VDF-TrFE) capacitors. We find that the piezoelectric effect is dominated by the change in lattice constant but, surprisingly, it cannot be accounted for by the polarization-biased electrostrictive contribution of the crystalline part alone. Our quantitative analysis shows that an additional contribution is operative, which we argue is due to an electromechanical coupling between the intermixed crystalline lamellae and amorphous regions. Our findings tie the counterintuitive negative piezoelectric response of PVDF and its copolymers to the dynamics of their composite microstructure.

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          CIX. Theory of barium titanate—Part II

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            Physics of the ferroelectric nonvolatile memory field effect transistor

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              Origins of Electro-Mechanical Coupling in Polycrystalline Ferroelectrics During Subcoercive Electrical Loading

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                Author and article information

                Journal
                Nature Materials
                Nat Mater
                Springer Nature
                1476-1122
                1476-4660
                October 5 2015
                October 5 2015
                : 15
                : 1
                : 78-84
                Article
                10.1038/nmat4423
                26436342
                579b7f41-0df5-428a-ba44-73bb23cf6a5e
                © 2015
                History

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