Optimizing the energy storage performance of NaNbO3 3 ceramics by rare-earth-based composite perovskite Sm(Mg0.5Zr0.5)O3 0.5 Zr 0.5 )O 3 modification

被引:10
|
作者
Xu, Mingzhao [1 ]
Zeng, Dafu [1 ]
Wang, Xiang [1 ]
Nong, Peng [1 ]
Pan, Yue [1 ]
Dong, Qinpeng [1 ]
Wang, Jiaming [1 ]
Zhou, Huanfu [1 ]
Chen, Xiuli [1 ]
机构
[1] Guilin Univ Technol, Minist Educ, Sch Mat Sci & Engn, Key Lab Nonferrous Mat & New Proc Technol, Guilin 541004, Guangxi, Peoples R China
来源
MICROSTRUCTURES | 2023年 / 3卷 / 04期
关键词
NaNbO3; 3; energy storage density; rare-earth modification; DIELECTRIC-PROPERTIES; GRAIN-SIZE; DENSITY; STABILITY; DISCHARGE;
D O I
10.20517/microstructures.2023.19
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Researchers often improve the energy storage performance of NaNbO3 3 ceramics through doping with Bi-based composites. Recent studies have shown that rare-earth elements, such as La and Sm, can suppress remanent polarization. In this study, a (1-x)NaNbO3-xSm(Mg0.5Zr0.5)O3 x )NaNbO 3- x Sm(Mg 0.5 Zr 0.5 )O 3 ceramic system was designed. Doping with Sm(Mg0.5Zr0.5)O3 0.5 Zr 0.5 )O 3 (SMZ) increases the resistance, activation energy, and bandgap of NaNbO3 3 ceramics, improves the breakdown field strength, and optimizes the energy storage efficiency of NaNbO3 3 ceramics. In this study, 0.92NaNbO3-0.08 3-0.08 SMZ achieved an energy storage density of 4.3/cm3 3 and an energy storage efficiency of 85.6% at 560 kV/cm. When x = 0.15, the sample exhibited an ultrahigh breakdown field strength and energy storage efficiency (720 kV/cm and 91%, respectively). In addition, the 0.08 SMZ sample had an ultrafast release rate of t 0.9 (57 ns), high current density (777.1 A/cm2), 2 ), and high power density (69.93 MW/cm3). 3 ). It has practical application prospects in high-performance energy storage capacitors.
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页数:13
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