Role of Ca off-centering in tuning the ferroelectric phase transitions in Ba(Zr,Ti)O3 system
Desheng Fu, Mitsuru Itoh

TL;DR
This study investigates how Ca off-centering influences ferroelectric phase transitions in Ba(Zr,Ti)O3, revealing mechanisms to enhance ferroelectric stability and electromechanical properties for green piezoelectric applications.
Contribution
It demonstrates that Ca off-centering can stabilize ferroelectric phases and tune transition temperatures, offering a new approach to optimize piezoelectric materials.
Findings
Ca off-centering stabilizes ferroelectric phases.
Shift of phase transition temperatures due to Ca off-centering.
Enhanced electromechanical coupling near room temperature.
Abstract
We here report the substitution effects of the smaller Ca for the bulky Ba in (Ba1-xCax)(Ti1-yZry)O3 perovskite oxides for two systems (Ba1-xCax)TiO3 with y=0 and (Ba1-xCax)(Ti0.9Zr0.1)O3 with y=0.1. Ca off-centering was found to play a critical role in stabilizing the ferroelectric phase and tuning the polarization states in both systems. It was demonstrated that the atomic displacement due to Ca off-centering in the bulky Ba-site in the perovskite structure provides an effective approach to compensate the reduction of ferroelectricity due to the chemical pressure, which allows to keep the Curie point nearly constant in the (Ba1-xCax)TiO3 system and increase the Curie point in the (Ba1-xCax)(Ti0.9Zr0.1)O3 system. It was commonly observed that the Ca off-centering effects lead to the shift of the R-O and O-T phase transitions toward lower temperatures and the ferroelectric stability of…
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Taxonomy
TopicsFerroelectric and Piezoelectric Materials · Multiferroics and related materials · Microwave Dielectric Ceramics Synthesis
