材料科学
纳米笼
功率密度
超级电容器
大孔隙
堆栈(抽象数据类型)
多孔性
介孔材料
电容
纳米技术
复合材料
碳纤维
功率(物理)
热力学
电极
复合数
计算机科学
物理化学
催化作用
物理
生物化学
化学
程序设计语言
作者
Yongfeng Bu,Tao Sun,Yuejin Cai,Lingyu Du,Ou Zhuo,Lijun Yang,Qiang Wu,Xizhang Wang,Zheng Hu
标识
DOI:10.1002/adma.201700470
摘要
High volumetric energy density combined with high power density is highly desired for electrical double‐layer capacitors. Usually the volumetric performance is improved by compressing carbon material to increase density but at the much expense of power density due to the deviation of the compressed porous structure from the ideal one. Herein the authors report an efficient approach to increase the density and optimize the porous structure by collapsing the carbon nanocages via capillarity. Three samples with decreasing sizes of meso‐ and macropores provide us an ideal model system to demonstrate the correlation of volumetric performance with porous structure. The results indicate that reducing the surplus macropores and, more importantly, the surplus mesopores is an efficient strategy to enhance the volumetric energy density while keeping the high power density. The optimized sample achieves a record‐high stack volumetric energy density of 73 Wh L −1 in ionic liquid with superb power density and cycling stability.
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