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0.45NaBiTiO₃-0.55SrBiTiO₃/AlN 0-3型无铅复合陶瓷的增强介电储能性能

Enhanced Dielectric Energy Storage Performance of 0.45NaBiTiO-0.55SrBiTiO/AlN 0-3 Type Lead-Free Composite Ceramics.

作者信息

You Di, Tan Hua, Yan Zilin, Gao Huayun, Chen Shenggui, Ma Weigang, Fan Pengyuan, Tran Nguyen-Minh-An, Liu Yang, Salamon David, Zhang Haibo

机构信息

School of Materials Science and Engineering, State Key Laboratory of Material Processing and Die & Mould Technology, Huazhong University of Science and Technology, Wuhan 430074, PR China.

Shenzhen Research Institute of Central China Normal University, Shenzhen 518000, PR China.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 20;14(15):17652-17661. doi: 10.1021/acsami.2c01406. Epub 2022 Apr 6.

Abstract

NaBiTiO (NBT) ceramic is the promising dielectric material for energy storage devices due to its high maximum polarizability and temperature stability. However, its low breakdown strength limits its application. Here, we prepared 0-3 type composite 0.45NaBiTiO-0.55SrBiTiO/ wt % AlN (NBT-SBT/AlN) to increase the breakdown strength. The effects of the various AlN contents on the phase composition, microstructures, dielectric, and energy storage properties of NBT-SBT were systematically discussed. The result showed that the enhanced energy storage properties were obtained by introducing AlN particles. The NBT-SBT/6AlN composite ceramics showed a high breakdown strength of 360 kV/cm, large energy density of 5.53 J/cm, and energy efficiency of 90%. Meanwhile, the excellent frequency (10-500 Hz) and temperature stability (25-125 °C) were exhibited with the fluctuation of energy storage within 9% and energy efficiency more than 87%, suggesting that the 0-3 composite NBT-SBT/AlN is a candidate dielectric material for the dielectric energy storage.

摘要

铌酸钠铋(NBT)陶瓷因其高最大极化率和温度稳定性,是用于储能器件的有前景的介电材料。然而,其低击穿强度限制了它的应用。在此,我们制备了0-3型复合材料0.45铌酸钠铋-0.55锶铋钛酸盐/重量百分比氮化铝(NBT-SBT/AlN)以提高击穿强度。系统地讨论了不同氮化铝含量对NBT-SBT的相组成、微观结构、介电和储能性能的影响。结果表明,通过引入氮化铝颗粒获得了增强的储能性能。NBT-SBT/6AlN复合陶瓷表现出360 kV/cm的高击穿强度、5.53 J/cm的大能量密度和90%的能量效率。同时,在10-500 Hz频率和25-125 °C温度范围内表现出优异的稳定性,储能波动在9%以内,能量效率超过87%,这表明0-3型复合NBT-SBT/AlN是一种用于介电储能的候选介电材料。

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