帮助 关于我们

返回检索结果

陶瓷电介质储能材料研究进展
Research progress in ceramic dielectric energy storage materials

查看参考文献53篇

姜莹 1,2   申心畅 1   郭丽敏 1,2 *   毕科 1   王晓慧 2   李龙土 2  
文摘 为了更好地推动高储能密度和高效率无铅陶瓷介质电容器的研究与发展,本文综合介绍了陶瓷电介质储能材料的储能原理及分类,比较分析了近年来线性电介质、铁电体、弛豫铁电体和反铁电体储能材料的研究进展,主要研究体系和性能优劣。总结了陶瓷储能材料目前面临的挑战以及改善其储能性能的策略,展望了其未来在5G通信、新能源汽车、消费电子等工业应用中的发展及小型化、高耐电压性、高可靠性的技术发展趋势。
其他语种文摘 In order to better promote the research and development of high energy storage density and high efficiency lead-free ceramic dielectric capacitors,a comprehensive introduction to the energy storage principle and classification of ceramic dielectric energy storage materials was presented,the research progress,main research systems and performance advantages and disadvantages of linear dielectric,ferroelectric,relaxed ferroelectric and antiferroelectric energy storage materials in recent years were comparatively analyzed.The current challenges faced by ceramic energy storage materials and strategies to improve their energy storage were summarized.The current challenges of ceramic energy storage materials and the strategies to improve their energy storage performance were summarized,and their future development and applications were also presented.
来源 材料工程 ,2022,50(4):96-103 【核心库】
DOI 10.11868/j.issn.1001-4381.2021.000192
关键词 电介质材料 ; 铁电体 ; 尺寸效应 ; 掺杂改性
地址

1. 北京邮电大学理学院, 北京, 100876  

2. 清华大学材料科学与工程学院, 新型陶瓷与精细工艺国家重点实验室, 北京, 100080

语种 中文
文献类型 综述型
ISSN 1001-4381
学科 一般工业技术
基金 国家自然科学基金项目 ;  广东省重点领域研究计划
文献收藏号 CSCD:7208409

参考文献 共 53 共3页

1.  Cheng X B. Toward safe lithium metal anode in rechargeable batteries:a review. Chemical Reviews,2017,117(15):10403-10473 CSCD被引 552    
2.  Gonzalez A. Review on supercapacitors:technologies and materials. Renewable and Sustainable Energy Reviews,2016,58:1189-1206 CSCD被引 92    
3.  王婳懿. 陶瓷超级电容器的研究进展. 电子元件与材料,2010,29(12):68-70 CSCD被引 2    
4.  Miller J R. Materials science-electrochemical capacitors for energy management. Science,2008,321(5889):651-652 CSCD被引 221    
5.  Love G R. Energy storage in ceramic dielectrics. Journal of the American Ceramic Society,1990,73(2):323-328 CSCD被引 11    
6.  Li J. Multilayer lead-free ceramic capacitors with ultrahigh energy density and efficiency. Adv Mater,2018,30(32):1802155 CSCD被引 34    
7.  Wang G. Ultrahigh energy storage density lead-free multilayers by controlled electrical homogeneity. Energy &Environmental Science,2019,12(2):582-588 CSCD被引 24    
8.  Yao Z H. Homogeneous/inhomogeneous-structured dielectrics and their energy-storage performances. Adv Mater,2017,29(20):201601727 CSCD被引 66    
9.  Yan F. Optimization of polarization and electric field of bismuth ferrite-based ceramics for capacitor applications. Chemical Engineering Journal,2020,417:127945 CSCD被引 13    
10.  Hao J G. Progress in high-strain perovskite piezoelectric ceramics. Materials Science and Engineering: R,2019,135:1-57 CSCD被引 41    
11.  Yang L T. Perovskite lead-free dielectrics for energy storage applications. Progress in Materials Science,2019,102:72-108 CSCD被引 81    
12.  Christen T. Theory of ragone plots. Journal of Power Sources,2000,91(2):210-216 CSCD被引 15    
13.  Zou K L. Recent advances in lead-free dielectric materials for energy storage. Materials Research Bulletin,2019,113:190-201 CSCD被引 9    
14.  Hao X H. A review on the dielectric materials for high energystorage application. Journal of Advanced Dielectrics,2013,3(1):1-14 CSCD被引 34    
15.  Wen R M. Nanocomposite capacitors with significantly enhanced energy density and breakdown strength utilizing a small loading of monolayer titania. Advanced Materials Interfaces,2018,5(3):1701088 CSCD被引 9    
16.  Yang L Y. Novel polymer ferroelectric behavior via crystal isomorphism and the nanoconfinement effect. Polymer,2013,54(7):1709-1728 CSCD被引 6    
17.  Sarantopoulos A. Electronic degeneracy and intrinsic magnetic properties of epitaxial Nb:SrTiO_3thin films controlled by defects. Physical Review Letters,2015,115(16):166801 CSCD被引 1    
18.  Wilk G D. High-kappa gate dielectrics:current status and materials properties considerations. Journal of Applied Physics,2001,89(10):5243-5275 CSCD被引 155    
19.  Huebner W. High breakdown strength,multilayer ceramics for compact pulsed power applications. Digest of Technical Papers 12th IEEE International Pulsed Power Conference,1999:1242-1245 CSCD被引 1    
20.  Shende R V. Strontium zirconate and strontium titanate ceramics for high-voltage applications:synthesis,processing,and dielectric properties. Journal of the American Ceramic Society,2001,84(7):1648-1650 CSCD被引 6    
引证文献 4

1 汪丰麟 BaTi_(1-x)Ce_xO_3陶瓷结构特性与介电性能的实验研究及第一性原理计算 材料工程,2023,51(8):130-141
CSCD被引 0 次

2 王佳蕊 ZnO掺杂对钛酸锶基陶瓷储能性能的影响 硅酸盐学报,2024,52(4):1183-1191
CSCD被引 0 次

显示所有4篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号