Journal of Advanced Dielectrics, Volume. 14, Issue 3, 2440011(2024)

Enhanced energy-storage performance with optimized thermally stable dielectric property in BNT–BST ceramics modified by KNN doping

Shurong Li1, Chenglong Zhang1, Suzhi Li1, Le Zhang2、*, and Haijun Wu1、**
Author Affiliations
  • 1State Key Laboratory for Mechanical Behavior of Materials, Xi’an Jiaotong University, 710049, Xi’an, P. R. China
  • 2School of Physics, Xi’an Jiaotong University, 710049, Xi’an, P. R. China
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    Developing environmental-friendly materials with high-density energy storage is of paramount importance to meet the burgeoning demands for energy storage. In this study, we harness the modulation of a multicomponent solid solution by introducing KNN as a third element into the BNT–BST system, thereby achieving a marked enhancement in both energy storage performance and the temperature stability of the dielectric constant. BNBST–4KNN stands out for its exceptional dielectric stability, with a dielectric constant variation rate within 10% across a broad temperature range of 40°C to 400°C, a feat attributed to the flattening and broadening of the Tm peak. BNBT–2KNN exhibits superior energy storage capabilities, with an energy storage density of 1.324 J/cm3 and an energy storage efficiency of 72.3%, a result of the PE loop becoming more slender. These advancements are pivotal for the sustainable progression of energy storage technologies.

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    Shurong Li, Chenglong Zhang, Suzhi Li, Le Zhang, Haijun Wu. Enhanced energy-storage performance with optimized thermally stable dielectric property in BNT–BST ceramics modified by KNN doping[J]. Journal of Advanced Dielectrics, 2024, 14(3): 2440011

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    Paper Information

    Category: Research Articles

    Received: Apr. 13, 2024

    Accepted: May. 13, 2024

    Published Online: Jul. 22, 2024

    The Author Email: Zhang Le (le.zhang@xjtu.edu.cn), Wu Haijun (wuhaijunnavy@xjtu.edu.cn)

    DOI:10.1142/S2010135X24400113

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