Structural Description of the Macroscopic Piezo- and Ferroelectric Properties of Lead Zirconate Titanate
Manuel Hinterstein, Jérôme Rouquette, Julien Haines, Philippe Papet, Michael Knapp, Julia Glaum, H. Fueß
Abstract
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Manuel Hinterstein, Jérôme Rouquette, Julien Haines, Philippe Papet, Michael Knapp, Julia Glaum, H. Fueß
Abstract
Open-access reader
An in situ structural description of the origin of the ferroelectric properties as a function of the applied electric field E was obtained by synchrotron x-ray diffraction. A setup was used to average the effects of the preferred orientation induced by the strong piezoelectric strain and solve in situ the crystal structure as a function of the applied electric field. Hence, we were able to describe the microscopic origin of the macroscopic ferro- and piezoelectric properties of the most widely used ferroelectric material, lead zirconate titanate.
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An in situ structural description of the origin of the ferroelectric properties as a function of the applied electric field E was obtained by synchrotron x-ray diffraction. A setup was used to average the effects of the preferred orientation induced by the strong piezoelectric strain and solve in situ the crystal structure as a function of the applied electric field. Hence, we were able to describe the microscopic origin of the macroscopic ferro- and piezoelectric properties of the most widely used ferroelectric material, lead zirconate titanate.
Key concepts: Lead zirconate titanate, Ferroelectricity, Piezoelectricity, Materials science, Electric field, Synchrotron, Diffraction, Zirconate