Sm doped BNT–BZT lead-free ceramic for energy storage applications with broad temperature range

被引:0
作者
Zixuan Pan
Hua Hao
Dongxu Li
Qinghu Guo
Zhonghua Yao
Minghe Cao
Hanxing Liu
机构
[1] Wuhan University of Technology,State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Material Science and Engineering, International School of Material Science and Engineering
[2] Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory,undefined
[3] Xianhu Hydrogen Valley,undefined
来源
Journal of Materials Science: Materials in Electronics | 2022年 / 33卷
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摘要
Dielectric ceramics with good temperature stability and excellent energy storage performances are in great demand for numerous electrical energy storage applications. In this work, xSm doped 0.5Bi0.51Na0.47TiO3–0.5BaZr0.45Ti0.55O3 (BNT–BZT − xSm, x = 0–0.04) relaxor ferroelectric lead-free ceramics were synthesized by high temperature solid-state sintering for energy storage applications. The grain sizes of BNT–BZT − xSm ceramics exhibited gradually decrease with the increase of Sm doping content, and the temperature stability of dielectric properties were improved due to the significantly reduced dielectric constant at depolarization temperature (Td). It’s worth noting that a good temperature stability with the variation of dielectric constant at − 50–200 °C (Δε) less than 15% was obtained in the BNT–BZT − 0.04Sm ceramic. A high recoverable energy storage density Wrec = 1.12 J/cm3 and high energy storage efficiency η = 89.6%, together with excellent temperature stability from 25 to 200 °C and fast charge–discharge t0.9 = 0.655 µs were achieved in BNT–BZT − 0.04Sm ceramic, demonstrating its potential application for future pulse electric device candidate.
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页码:14644 / 14654
页数:10
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