Proved phase fraction effect within MPB composition for high electromechanical properties in lead-free BF-BT ceramics
摘要
Finding alternative to lead-based piezoelectric materials is crucial due to environmental concerns. To optimize the morphotropic phase boundary (MPB) effect in BiFeO3-based lead-free piezoelectric materials, eco-friendly lead-free (BiFeO3)1-x(BaTiO3)x (BF-BT) ceramics were synthesized using the conventional solid-state reaction method followed by an air-quenching process. Their structural, ferroelectric, piezoelectric and dielectric behaviors were investigated. X-ray diffraction patterns revealed a single-phase perovskite structure with an MPB between rhombohedral and tetragonal phases. BF-35BT ceramics exhibited high maximum polarization (Pmax = 30.16 µC/cm2) and remnant polarization (Pr = 21.29 µC/cm2) with a minimum coercive field at room temperature, which further improved to 48.55 µC/cm2 and 44.14 µC/cm2 at high temperature (125 °C). A maximum unipolar strain of 0.20% with corresponding dynamic piezoelectric coefficients (