超级电容器
材料科学
电容
电极
电解质
储能
纳米技术
碳纤维
电化学
活性炭
比表面积
制作
化学工程
复合材料
有机化学
工程类
量子力学
病理
物理化学
吸附
医学
催化作用
功率(物理)
物理
化学
替代医学
复合数
作者
Gaobo Lou,Yatao Wu,Xinqiang Zhu,Yingzhuo Lu,Shuai Yu,Chunhai Yang,Hao Chen,Cao Guan,Lü Li,Zhehong Shen
标识
DOI:10.1021/acsami.8b16881
摘要
High cost, low capacitance, and complicated synthesis process are still the key limitations for carbon-negative materials to meet their industrial production and application in high-energy-density asymmetric supercapacitors (ASCs). In this work, we demonstrate the facile preparation of ultrahigh-surface-area free-standing carbon material from low-cost industrial carbon felt (CF) and its application for flexible supercapacitor electrode with outstanding performance. Through a simple freeze-drying-assisted activation method, the as-prepared activated CF (ACF) was endowed with satisfactory flexibility, ultrahigh specific surface area of 2109 m2 g-1, good electric conductivity (311 S m-1), and excellent wettability to aqueous electrolyte. Owing to these merits, the ACF expressed an ultrahigh areal capacitance of 1441 mF cm-2, a high specific capacitance ( Cs) of 280 F g-1 based on the mass of the whole electrode, and an impressive cycling stability (87% retention after 5000 cycles). When applied as a flexible freestanding electrode for MnO2//ACF ASCs, the ACF-based device provided satisfactory areal energy densities of 0.283 and 0.104 mWh cm-2 in aqueous and quasi-solid electrolytes, respectively. The values outperform many previously reported carbon-based electrochemical devices. The low cost of raw material and the facile fabrication process, together with the high electrochemical performance, make our ACF electrode highly applicable for the mass production of flexible energy-storage devices.
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