High-Performance BNT-Based Ferroelectric Ceramics With Simultaneously Enhanced Polarization and Breakdown Strength
编号:122 访问权限:仅限参会人 更新:2022-05-12 15:09:05 浏览:550次 特邀报告

报告开始:2022年05月26日 16:05(Asia/Shanghai)

报告时间:30min

所在会场:[S7] Mineral Materials and Advanced Energy Materials [S7-1] Mineral Materials and Advanced Energy Materials-1

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摘要
ABSTRACT:BNT(Bi0.5Na0.5TiO3)-based ferroelectric ceramics have drawn much attention in energy-storage field due to the high polarization and good temperature stability. However, the reduction of Ti4+ caused by the volatilization of Bi and Na elements during high-temperature sintering is a huge problem. Multivalence element (Mn) is adopted in this work to prevent the reduction of Ti4+, and thus enhance the polarization and breakdown strength simultaneously. Various content of MnO2 doped (0.95Bi0.5Na0.5TiO3-0.05SrZrO3)-0.2NaNbO3 (BNTSZNN) ceramics were prepared by the Ramp-to-spike sintering method. The existence of Ti3+, confirmed by the X-ray photoelectron spectroscopy (XPS), proves the reduction of Ti4+. As the content of MnO2 increases, the content of Ti3+ is effectively decreased, reducing the degradation of ferroelectricity and leakage conductance. As a result, an ultra-high discharge energy density (Wrec) of 7.05 J/cm3 is achieved in the BNTSZNN-0.15MnO2 ceramic at 387 kV/cm. Importantly, the BNTSZNN-0.15MnO2 ceramic system behaves quite excellent temperature stability both in energy-storage and capacitance field. The variation in the discharge energy density (Wrec) is less than ±4% in the temperature range from 30 °C to 160 °C under the applied field of 120 kV/cm. Additionally, the variation in the capacitance (or dielectric permittivity) of the BNTSZNN-0.15 MnO2 ceramic is less than ±15% over the temperature range from -55 °C to 450 °C, with a high room temperature dielectric permittivity of 1507. All the above characteristics indicate the potential of BNTSZNN-0.15MnO2 as high-temperature and high-voltage ceramic dielectrics.
KEYWORDS: anti-reduction, energy storage, high polarization, high breakdown strength, temperature stability
 
关键词
high energy storage,high polarization,high breakdown strength,temperature stability
报告人
Ziming CAI
China University of Mining and Technology

稿件作者
子明 蔡 中国矿业大学
培忠 冯 中国矿业大学
航 杨 中国矿业大学
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重要日期
  • 会议日期

    05月26日

    2022

    05月27日

    2022

  • 05月03日 2022

    初稿截稿日期

  • 05月26日 2022

    报告提交截止日期

  • 05月28日 2022

    注册截止日期

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