Enhanced comprehensive energy storage properties of lead-free KNN based ceramics through composition optimization strategy

被引:6
作者
Gao, Tingting [1 ]
Mo, Mingyue [1 ]
Chen, Ning [1 ]
Chen, Qifan [1 ]
Lang, Rong [1 ]
Wang, Dong [1 ]
Tan, Zhi [1 ]
Xing, Jie [1 ]
Zhu, Jianguo [1 ]
机构
[1] Sichuan Univ, Coll Mat Sci & Engn, Chengdu 610064, Peoples R China
基金
中国国家自然科学基金;
关键词
Energy storage performances; Potassium sodium niobate; Polar nanoregions; Hardness; DENSITY; PERFORMANCE; EFFICIENCY;
D O I
10.1016/j.cej.2024.157560
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
As one of the most potential lead-free dielectric capacitors in pulsed power systems, K0.5Na0.5NbO3 (KNN)-based ceramic possesses comparatively high dielectric breakdown strength (BDS) due to its particular submicron grains. Nonetheless, it is hard to improve both the energy efficiency 7 and the recoverable energy density Wrec of potassium sodium niobate ceramic at the same time. Herein, a composition optimization strategy is used, Bi (Li0.5Nb0.5)O3 (BLN) as a second component and NaNbO3 (NN) as a third component are introduced into KNNbased ceramic. It is corroborated that BLN content facilitates the growth of polar nano-regions (PNRs), and then strengthens the relaxation behavior, lows the remnant polarization Pr and upgrades the maximum polarization Pmax value of the ceramic. A transition from ferroelectricity to relaxation ferroelectricity occurred and an ultrahigh Wrec of 10.03 J/cm3 with a 7 of 64.15 % and the BDS of 1140 kV/cm are gained in KNN-0.100BLN-NN ceramic, Wrec of 8.25 J/cm3, 7 of 71.26 % and the BDS of 840 kV/cm are obtained in KNN-0.075BLN-NN ceramic. Besides, the KNN-0.075BLN-NN ceramic exists not only fine energy storage properties, but also high hardness and good temperature and frequency stability, confirming it's a feasible material to be applied in pulsed power systems.
引用
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页数:11
相关论文
共 54 条
[1]   Urbach tail and bandgap analysis in near stoichiometric LiNbO3 crystals [J].
Bhatt, R. ;
Bhaumik, I. ;
Ganesamoorthy, S. ;
Karnal, A. K. ;
Swami, M. K. ;
Patel, H. S. ;
Gupta, P. K. .
PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2012, 209 (01) :176-180
[2]   Energy storage properties, transmittance and hardness of Er doped K0.5Na0.5NbO3-based ceramics [J].
Bi, Wenjing ;
Li, Ying ;
Tian, Gang ;
Du, Juan ;
Hao, Jigong ;
Li, Peng ;
Fu, Peng ;
Li, Wei ;
Zheng, Limei .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2025, 45 (01)
[3]   Energy storage properties in Bi(Mg1/2Sb2/3)O3-doped NaNbO3 lead-free ceramics [J].
Chen, Hongyun ;
Dong, Xiaoyan ;
Wang, Xiang ;
Pan, Yue ;
Wang, Jiaming ;
Deng, Lian ;
Chen, Xiuli ;
Dong, Qingpeng ;
Zhang, Hailin ;
Zhou, Huanfu .
CERAMICS INTERNATIONAL, 2022, 48 (06) :7723-7729
[4]   Superior energy storage properties with prominent thermal stability in lead-free KNN-based ceramics through multi-component optimization strategy [J].
Chen, Qifan ;
Chen, Hao ;
Wang, Dong ;
Gao, Tingting ;
Li, Qinyu ;
Lang, Rong ;
Tan, Zhi ;
Xing, Jie ;
Zhu, Jianguo .
CHEMICAL ENGINEERING JOURNAL, 2024, 494
[5]   Achieving outstanding temperature stability in KNN-based lead-free ceramics for energy storage behavior [J].
Chen, Qifan ;
Gao, Tingting ;
Lang, Rong ;
Tan, Zhi ;
Xing, Jie ;
Zhu, Jianguo .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2023, 43 (06) :2442-2451
[6]   Enhanced energy storage properties of (Ba0.4Sr0.6)TiO3 ceramics with ultrahigh energy efficiency through doping of Bi0.2Sr0.7(Mg1/3Nb2/3)O3 [J].
Cheng, Long ;
Wang, Qi ;
Zheng, Qiuyu ;
Li, Zhiqing ;
Xie, Bing ;
Zhang, Haibo ;
Yan, Zilin .
CERAMICS INTERNATIONAL, 2024, 50 (11) :19604-19612
[7]   A strategy for high performance of energy storage and transparency in KNN-based ferroelectric ceramics [J].
Dai, Zhonghua ;
Li, Dingyan ;
Zhou, Zhijian ;
Zhou, Shun ;
Liu, Weiguo ;
Liu, Jingjing ;
Wang, Xi ;
Ren, Xiaobing .
CHEMICAL ENGINEERING JOURNAL, 2022, 427
[8]   Mechanism and simulation analysis of high electric field of NaNbO 3-based energy storage ceramics based on defect engineering design [J].
Dong, Qinpeng ;
Zeng, Dafu ;
Pan, Yue ;
Nong, Peng ;
Chen, Xiuli ;
Li, Xu ;
Zhou, Huanfu .
CHEMICAL ENGINEERING JOURNAL, 2024, 493
[9]   (1-x)[0.90NN-0.10Bi(Mg2/3Nb1/3)O3]-x(Bi0.5Na0.5)0.7Sr0.3TiO3 ceramics with core-shell structures: A pathway for simultaneously achieving high polarization and breakdown strength [J].
Dong, Xiaoyan ;
Li, Xu ;
Chen, Xiuli ;
Tan, Zhi ;
Wu, Jiagang ;
Zhu, Jianguo ;
Zhou, Huanfu .
NANO ENERGY, 2022, 101
[10]   Enhanced energy storage and cycling stability of (Sr0.7La0.2)(Mg1/3Nb2/3) O3-modified K0.5Na0.5NbO3 ceramics via multiple synergistic strategies [J].
Duan, Xueliang ;
Wang, Juanjuan ;
Chai, Qizhen ;
Ma, Pengkang ;
Du, Hongliang ;
Jin, Li ;
Lai, Fusheng ;
Peng, Zhanhui ;
Chao, Xiaolian ;
Lu, Jiangbo .
CERAMICS INTERNATIONAL, 2024, 50 (11) :18797-18805