首页> 外文期刊>CERAMICS INTERNATIONAL >Time-stable giant energy density and high efficiency in lead free (Ce,Mn)-modified (Na0.8K0.2)(0.)5Bi0.5TiO3 ceramic film capacitor
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Time-stable giant energy density and high efficiency in lead free (Ce,Mn)-modified (Na0.8K0.2)(0.)5Bi0.5TiO3 ceramic film capacitor

机译:无铅巨型能量密度和高效率在无铅(Ce,Mn) - 碘化(Na0.8K0.2)(0.)5Bi0.5tio3陶瓷薄膜电容器中

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摘要

The current urgent desire of the renewable energy has imposed much challenge and inspiration for the design and development of the lead-free dielectric capacitors. High recoverable energy storage density (W-rec) and efficiency (eta) associated with long-time stability are highly demanded for the pulsed power systems. Here, we present a significantly enhanced energy storage performance in (Ce,Mn) hybrid doped (Na0.8K0.2)(0.)5Bi0.5TiO3-BiFeO3 [(Ce,Mn):NKBT-BFO] ceramic film capacitor deposited on indium tin oxide (ITO)/glass substrate. Meanwhile, the pure NKBT-BFO, Ce doped NKBT-BFO and Mn doped NKBT-BFO are studied for comparison. A large W-rec of 58.3 J/cm(3) together with a high eta of 58.1% is realized in (Ce,Mn):NKBT-BFO at 2200 kV/cm, which is proposed by the formation of a slim loop with a large difference between the remanent polarization (P-r) and maximum polarization (P-max) at a high dielectric breakdown field strength. Moreover, the energy storage property is weakly dependent on time with small variations of W-rec ( < 23.4%) and eta( < 11.3%) over a long time range of 2 days-6 months. These results indicate that the (Ce,Mn)-codoped NKBT-BFO ceramic thin film has great potential for the applications in lead-free energy storage film capacitors.
机译:可再生能源的当前紧急愿望对无铅电介质电容器的设计和开发造成了大量挑战和灵感。对于脉冲动力系统,高度要求高可回收能量存储密度(W-REC)和效率(ETA),对长时间稳定性有所要求。在这里,我们在(CE,Mn)掺杂(Na0.8k0.2)(0.)5bi0.5tio3-bifeO3 [(Ce,Mn):NKBT-BFO]陶瓷薄膜电容器中介绍了显着增强的能量存储性能氧化铟锡(ITO)/玻璃基材。同时,研究了纯NKBT-BFO,Ce掺杂NKBT-BFO和Mn掺杂NKBT-BFO进行比较。 58.3 J / cm(3)的大W-REC与58.1%的高ETA一起实现(CE,MN):2200 kV / cm的NKBT-BFO,由形成纤薄的环路提出在高介电击穿场强度下,剩余极化(PR)和最大偏振(P-MAX)之间的差异很大。此外,能量储存性能弱依赖于时间较小的W-REC(<23.4%)和ETA(<11.3%)在2天 - 6个月的长时间范围内的时间。这些结果表明(Ce,Mn) - 陶瓷的NKBT-BFO陶瓷薄膜具有铅的无铅能量储存膜电容器的应用很大。

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