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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >A novel lead-free ceramic with layered structure for high energy storage applications
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A novel lead-free ceramic with layered structure for high energy storage applications

机译:一种新型无铅陶瓷,具有用于高储能应用的层状结构

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摘要

In recent years, ceramic capacitors have attracted much attention due to their high energy storage properties and fast charge-discharge capability. The (SrTiO3+0.5?wt%Li2CO3)/(0.93Bi0.5Na0.5TiO3-0.07Ba0.94La0.04Zr0.02Ti0.98O3) (STL/(BNT-BLZT)) lead-free ceramic with layered structure was designed and fabricated via the tape-casting and subsequently laminating technique, and sintered by the conventional solid state sintering method in this study. The results reveal that the STL/(BNT-BLZT) multilayer ceramic sintered at 1175?°C with an excellent charge energy density of 3.67?J/cm3and discharge energy density of 2.72?J/cm3under 294?kV/cm. In addition, the energy storage properties of STL/(BNT-BLZT) multilayer ceramic also displays good thermal stability from 25 to 100?°C at the electric field of 100?kV/cm. These results indicate that the STL/(BNT-BLZT) multilayer ceramic may be a promising lead-free material for high energy storage applications.
机译:近年来,由于其高储能性能和快速充放电能力,陶瓷电容器引起了很多关注。 (SRTIO3 + 0.5?WT%Li 2 CO 3)/(0.93Bi0.5NA0.5TiO3-0.07Ba0.94LA0.04ZR0.02TI0.98O3)(STL /(BNT-BLZT))设计和制造了具有层状结构的无铅陶瓷 通过胶带铸造和随后的层压技术,并通过该研究中的常规固态烧结方法烧结。 结果表明,STL /(BNT-BLZT)多层陶瓷在1175Ω℃下烧结,具有优异的充电能量密度为3.67ΩΩ·j / cm3和放电能量密度为2.72Ω·j / cm3下调294?kv / cm。 此外,STL /(BNT-BLZT)多层陶瓷的能量储存性能也显示在100ΩkV / cm的电场25至100Ω℃的良好热稳定性。 这些结果表明STL /(BNT-BLZT)多层陶瓷可以是用于高能储存应用的有前途的无铅材料。

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