超级电容器
材料科学
石墨烯
电容
功率密度
电极
电解质
电化学
碳纳米纤维
储能
化学工程
纳米技术
水平扫描速率
纳米纤维
光电子学
碳纳米管
功率(物理)
循环伏安法
化学
物理
物理化学
量子力学
工程类
作者
Zhuangjun Fan,Jun Yan,Tong Wei,Linjie Zhi,Guoqing Ning,Tianyou Li,Fei Wei
标识
DOI:10.1002/adfm.201100058
摘要
Abstract Asymmetric supercapacitor with high energy density has been developed successfully using graphene/MnO 2 composite as positive electrode and activated carbon nanofibers (ACN) as negative electrode in a neutral aqueous Na 2 SO 4 electrolyte. Due to the high capacitances and excellent rate performances of graphene/MnO 2 and ACN, as well as the synergistic effects of the two electrodes, such asymmetric cell exhibits superior electrochemical performances. An optimized asymmetric supercapacitor can be cycled reversibly in the voltage range of 0–1.8 V, and exhibits maximum energy density of 51.1 Wh kg −1 , which is much higher than that of MnO 2 //DWNT cell (29.1 Wh kg −1 ). Additionally, graphene/MnO 2 //ACN asymmetric supercapacitor exhibits excellent cycling durability, with 97% specific capacitance retained even after 1000 cycles. These encouraging results show great potential in developing energy storage devices with high energy and power densities for practical applications.
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