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Title: Improved energy storage performance in rare-earth modified lead-free BNT-based relaxor ferroelectric ceramics
Authors: Bin, C
Hou, X 
Liao, L
Liu, Y
Yang, H
Liu, Y
Wang, J
Issue Date: 3-Jul-2023
Source: Applied physics letters, 3 July 2023, v. 123, no. 1, 012901, p. 012901-1 - 012901-7
Abstract: Dielectric ceramic capacitors with high energy storage performance are indispensable components in high-power pulse electronic systems. Herein, a collaborative optimization design is employed to achieve excellent energy storage performance in rare-earth oxides modified 0.76(0.94Bi0.5Na0.5TiO3-0.06BaTiO3)-0.24Sr0.7Bi0.2TiO3 (BNBT-SBT) ceramics by simultaneously enhancing the breakdown field strength (Eb) and relaxor behavior. To this end, ferroelectric domains are partially transformed into polar nanoregions by introducing relaxor ferroelectric SBT, while a smaller grain size is produced by doping rare-earth elements to improve the Eb and further disrupt the long-range order of ferroelectric polarization. It is found that the La-doped BNBT-SBT ceramic simultaneously exhibits a superior energy storage density of 4.4 J cm−3 and an ultrahigh efficiency of ∼91% under a moderate electric field of 300 kV/cm. The good temperature stability (30–120 °C), frequency endurance (1–100 Hz), electric fatigue resistance (1–106 cycles), and excellent power density (108 MW cm−3) are also obtained in the lead-free Bi0.5Na0.5TiO3-based relaxor ferroelectric ceramics. These prominent properties indicate that the La-doped BNBT-SBT ceramic is a promising candidate for applications of high-energy storage capacitors.
Publisher: AIP Publishing LLC
Journal: Applied physics letters 
ISSN: 0003-6951
EISSN: 1077-3118
DOI: 10.1063/5.0158219
Rights: © 2023 Author(s). Published under an exclusive license by AIP Publishing.
This article may be downloaded for personal use only. Any other use requires prior permission of the author and AIP Publishing. This article appeared in Bin, C., Hou, X., Liao, L., Liu, Y., Yang, H., Liu, Y., & Wang, J. (2023). Improved energy storage performance in rare-earth modified lead-free BNT-based relaxor ferroelectric ceramics. Applied Physics Letters, 123(1) and may be found at https://doi.org/10.1063/5.0158219.
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