| 题名 | Simultaneously achieved temperature-insensitive high energy density and efficiency in domain engineered BaTiO3-Bi(Mg0.5Zr0.5)O-3 lead-free relaxor ferroelectrics |
| 作者 | |
| 通讯作者 | Yao, Fang-Zhou; Wang, Hong |
| 发表日期 | 2018-10
|
| DOI | |
| 发表期刊 | |
| ISSN | 2211-2855
|
| EISSN | 2211-3282
|
| 卷号 | 52页码:203-210 |
| 摘要 | The development of lead-free ceramics for electrostatic energy storage has attracted great interest because of the growing environmental concerns. Despite the extensive exploration, the unsuccess in synergistically optimizing both energy density and efficiency of polycrystalline materials is the major hurdle for their practical applications. Herein, Bi(Mg0.5Zr0.5)O-3-modified BaTiO3 lead-free relaxor ferroelectric ceramics are demonstrated to be viable candidates for energy storage. The materials can simultaneously deliver a high recoverable energy density of 2.9 J cm(-3) and a high energy efficiency of 86.8%, which are enhanced by 625% and 156% over those of unmodified BaTiO3, while keeping insensitive to thermal stimulus over 30-150 degrees C. It is unveiled that the incorporation of Bi(Mg0.5Zr0.5)O-3 favors the formation of polar nanoregions (PNRs), as evidenced by transmission electron microscope and piezoresponse force microscopy, which increases the threshold field to induce long range order and decreases the stability thereof, contributing to the more linear-towards polarization behavior. The dynamic PNRs along with the decreased grain size, increased bulk density, and consequently enhanced dielectric breakdown strength (301.4 kV cm(-1)) are responsible for the superior energy storage performance of Bi (Mg0.5Zr0.5)O-3-modified BaTiO3 ceramics. This work opens up a new avenue to tailor lead-free dielectrics toward high energy storage performance for electrical energy storage. |
| 关键词 | |
| 相关链接 | [来源记录] |
| 收录类别 | |
| 语种 | 英语
|
| 重要成果 | ESI高被引
|
| 学校署名 | 通讯
|
| 资助项目 | National Science Foundation of China[61471290]
; National Science Foundation of China[61631166004]
|
| WOS研究方向 | Chemistry
; Science & Technology - Other Topics
; Materials Science
; Physics
|
| WOS类目 | Chemistry, Physical
; Nanoscience & Nanotechnology
; Materials Science, Multidisciplinary
; Physics, Applied
|
| WOS记录号 | WOS:000444859700022
|
| 出版者 | |
| EI入藏号 | 20183105643142
|
| EI主题词 | Barium Titanate
; Bismuth Compounds
; Ceramic Materials
; Electric Breakdown
; Energy Storage
; Ferroelectric Ceramics
; Ferroelectric Materials
; Magnesium Compounds
; Polycrystalline Materials
; Scanning Probe Microscopy
; Storage (Materials)
; Thermodynamic Stability
; Transmission Electron Microscopy
; Zirconium Compounds
|
| EI分类号 | Energy Conservation:525.2
; Energy Storage:525.7
; Thermodynamics:641.1
; Storage:694.4
; Electricity: Basic Concepts And Phenomena:701.1
; Dielectric Materials:708.1
; Chemistry:801
; Ceramics:812.1
; Crystalline Solids:933.1
|
| 来源库 | Web of Science
|
| 引用统计 |
被引频次[WOS]:405
|
| 成果类型 | 期刊论文 |
| 条目标识符 | http://kc.sustech.edu.cn/handle/2SGJ60CL/27154 |
| 专题 | 工学院_材料科学与工程系 |
| 作者单位 | 1.Xi An Jiao Tong Univ, State Key Lab Mech Behav Mat, Xian 710049, Shaanxi, Peoples R China 2.Xi An Jiao Tong Univ, Sch Elect & Informat Engn, Xian 710049, Shaanxi, Peoples R China 3.Tsinghua Univ, Sch Mat Sci & Engn, State Key Lab New Ceram & Fine Proc, Beijing 100084, Peoples R China 4.Southern Univ Sci & Technol, Dept Mat Sci & Engn, Shenzhen 518055, Peoples R China |
| 通讯作者单位 | 材料科学与工程系 |
| 推荐引用方式 GB/T 7714 |
Yuan, Qibin,Li, Geng,Yao, Fang-Zhou,et al. Simultaneously achieved temperature-insensitive high energy density and efficiency in domain engineered BaTiO3-Bi(Mg0.5Zr0.5)O-3 lead-free relaxor ferroelectrics[J]. Nano Energy,2018,52:203-210.
|
| APA |
Yuan, Qibin.,Li, Geng.,Yao, Fang-Zhou.,Cheng, Shao-Dong.,Wang, Yifei.,...&Wang, Hong.(2018).Simultaneously achieved temperature-insensitive high energy density and efficiency in domain engineered BaTiO3-Bi(Mg0.5Zr0.5)O-3 lead-free relaxor ferroelectrics.Nano Energy,52,203-210.
|
| MLA |
Yuan, Qibin,et al."Simultaneously achieved temperature-insensitive high energy density and efficiency in domain engineered BaTiO3-Bi(Mg0.5Zr0.5)O-3 lead-free relaxor ferroelectrics".Nano Energy 52(2018):203-210.
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