1. Boosting the High Performance of BiFeO 3 -BaTiO 3 Lead-Free Piezoelectric Ceramics: One-Step Preparation and Reaction Mechanisms.
- Author
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Tang YC, Yin Y, Song AZ, Liu H, Zhang R, Zhong SJ, Li HZ, and Zhang BP
- Abstract
One of the notorious problems in BiFeO
3 -based piezoelectric ceramics is how to limit the formation of Bi25 FeO39 and Bi2 Fe4 O9 impurities to achieve excellent piezoelectric performance. In this study, a one-step preparation technology, namely, excluding PVA, calcining, and sintering are completed in one step, instead of three steps in the ordinary sintering method, is developed to prepare BiFeO3 - x BaTiO3 (BF- x BT) ceramics. The significance of this one-step method is that the thermodynamically unstable region of BiFeO3 is successfully avoided based on the Gibbs free energy of BiFeO3 , Bi25 FeO39 , and Bi2 Fe4 O9 . Benefiting from preventing the formation of Bi25 FeO39 and Bi2 Fe4 O9 impurities, the resultant ceramics show dense structures, macroscopic stripe domains, and a small number of island domains and display saturated P - E curves, sharp I - V characteristics, butterfly-shape S - E loops, and good piezoelectric properties ( d33 = 174-199 pC/N; TC = 494-513 °C). By analyzing X-ray diffraction patterns of BF- x BT (0 ≤ x ≤ 1) powders at different calcination temperatures ( Tcal ), the different reaction mechanisms between 750 °C ≤ Tcal ≤ 900 °C and 950 °C ≤ Tcal ≤ 1000 °C are revealed. When 750 °C ≤ Tcal ≤ 900 °C, Bi3+ diffuses into Fe2 O3 particles to form BiFeO3 and Bi25 FeO39 and then reacts with BaTiO3 ; in this temperature range, the formed Bi25 FeO39 is hard to eliminate. At 950 °C ≤ Tcal ≤ 1000 °C, Bi3+ and Fe ions simultaneously diffuse into BaTiO3 to form BF- x BT, which is beneficial to preventing the formation of Bi25 FeO39 and the improvement of performance.- Published
- 2022
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