材料科学
储能
小型化
无定形固体
陶瓷
微观结构
电介质
结晶
脉冲功率
功率密度
纳米技术
光电子学
工程物理
复合材料
化学工程
功率(物理)
电气工程
化学
电压
工程类
物理
有机化学
量子力学
作者
Fei Shang,Juwen Wei,Jiwen Xu,Haibo Zhang,Yang Xia,Guisheng Zhu,Kunpeng Jiang,Guohua Chen,Zuo‐Guang Ye,Huarui Xu
标识
DOI:10.1002/advs.202307011
摘要
Along with the demand for further miniaturization of high and pulsed power devices, it becomes more and more important to realize ultrahigh recoverable energy storage density (Wrec ) with high energy storage efficiency (η) and ultrahigh discharge energy storage density (Wd ) accompanied by high power density (Pd ) in dielectrics. To date, it remains, however, a big challenge to achieve high Wrec or Wd in glass ceramics compared to other dielectric energy storage materials. Herein, a strategy of defect formation modulation is applied to form "amorphous-disordered-ordered" microstructure in BaTiO3 -based glass ceramics so as to achieve a high Wrec of 12.04 J cm-3 with a high η of 81.1% and an ultrahigh Wd of 11.98 J cm-3 with a superb Pd of 973 MW cm-3 . This work demonstrates a feasible route to obtain glass ceramics with an outstanding energy storage performance and proves the enormous potential of glass ceramics in high and pulsed power applications.
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