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Charge localization in the model of relaxor ferroelectrics of relaxor ferroelectrics are described in the framework of the Landau-Ginzburg-Devonshire theory of phase

Optical properties and model of relaxor ferroelectrics of relaxor ferroelectrics are described in the framework of the Landau-Ginzburg-Devonshire theory of phase

Structure, dielectric and ferroelectric properties of modified KNN perovskite ceramics, and ferroelectric properties of (K0.5Na0.5)NbO3–LiNbO3 ceramics have been studied. Changes in temperatures of phase

Ferroelectricity in SrTiO3-BiScO3 system in this system are not ferroelectric materials. X-ray diffraction analysis revealed that at room temperature

Raman scattering in the ferroelectric diglycine nitrateRaman scattering in the ferroelectric diglycine nitrate

Development of Flexible Electronics Materials Based on Ferroelectric Copolymers of Vinylidene Fluoride with Tetrafluoroethylene Derived from Xerogel require subsequent processing to acquire ferroelectric properties, such as stretching, isothermal

Ferroelectric phase transitions in ionic conducting BICUVOX ceramics′ modifications have been defined. Decreasing of the ferroelectric α-β phase transition temperature, enlargement

Charge localization in the model of relaxor ferroelectrics of relaxor ferroelectrics are described in the framework of the Landau-Ginzburg-Devonshire theory of phase

Optical properties and model of relaxor ferroelectrics of relaxor ferroelectrics are described in the framework of the Landau-Ginzburg-Devonshire theory of phase

Optical properties of relaxor ferroelectricsOptical properties of relaxor ferroelectrics

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