Giant energy storage efficiency and high recoverable energy storage density achieved in K0.5Na0.5NbO3-Bi(Zn0.5Zr0.5)O3 ceramics

被引:165
作者
Zhang, Miao [1 ]
Yang, Haibo [1 ]
Li, Da [1 ]
Ma, Liang [2 ]
Lin, Ying [1 ]
机构
[1] Shaanxi Univ Sci & Technol, Sch Mat Sci & Engn, Shaanxi Key Lab Green Preparat & Functionalizat I, Xian 710021, Peoples R China
[2] Xianyang Nonmet Mineral R&D Inst Co Ltd, Xianyang 712021, Peoples R China
基金
中国国家自然科学基金;
关键词
LEAD-FREE CERAMICS; FREE RELAXOR CERAMICS; EXCELLENT STABILITY; TEMPERATURE; MULTILAYERS; PERFORMANCE; CAPACITORS;
D O I
10.1039/d0tc01711f
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
K0.5Na0.5NbO3(KNN)-based ceramics, as promising candidate materials that could replace lead-based ceramics, exhibit outstanding potential in pulsed power systems due to their large dielectric constant, high Curie temperature and environmental friendliness. Although a large amount of KNN-based ceramics with high recoverable energy storage density (W-rec) have been designed for energy storage applications, the relatively low energy storage efficiency (eta) limits their further development. In this work, a record high for eta(86.8%) and a giantW(rec)(3.50 J cm(-3)) were simultaneously obtained in the 0.85K(0.5)Na(0.5)NbO(3)-0.15Bi(Zn0.5Zr0.5)O-3(0.85KNN-0.15BZZ) ceramic, thanks to the introduction of Bi(Zn0.5Zr0.5)O-3(BZZ), which increased the relaxation behavior and enhanced the breakdown strength (BDS). Furthermore, desirableW(rec)and eta with a variation of less than 10% can be accordingly obtained in the temperature range of 20-120 degrees C. More importantly, it can be confirmed by the first-order reversal curve (FORC) distribution that the outstanding energy storage performances of the 0.85KNN-0.15BZZ ceramic should be ascribed to its desirable relaxor ferroelectric performances. In addition, the 0.85KNN-0.15BZZ ceramic displays excellent pulsed charging-discharging performances with an outstanding power density of 33.76 MW cm(-3), a current density of 562.63 A cm(-2)and a fast discharge speed (t(0.9)= 114.6 ns). The results reveal that the 0.85KNN-0.15BZZ ceramic is an attractive candidate material for next-generation dielectric capacitors.
引用
收藏
页码:8777 / 8785
页数:9
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