超级电容器
材料科学
纳米技术
电极
电容
碳纤维
电化学
储能
化学工程
复合材料
复合数
功率(物理)
化学
物理
物理化学
量子力学
工程类
作者
Xinhui Xia,Yongqi Zhang,Zhanxi Fan,Dongliang Chao,Qinqin Xiong,J.P. Tu,Hua Zhang,Hong Jin Fan
标识
DOI:10.1002/aenm.201401709
摘要
The high performance of electrochemical energy‐storage devices relies largely on scrupulous design of nanoarchitectures and smart hybridization of bespoke active materials. Carbon nanopsheres (CNSs) are widely used for energy storage and conversion devices. Here, the directional assembly of CNSs on a vertical‐standing metal scaffold into a core/shell array structure is reported. The method uses a three‐step all‐solution synthesis strategy (chemical bath deposition, electrodeposition, and hydrothermal) and begins from ZnO microrod arrays as a sacrificial template. The self‐assembly of CNSs can be correlated to a simultaneous etching effect to the ZnO accompanying the polymerization of glucose precursor. The Ni microtube/CNSs arrays are selected as an example for structural and electrochemical characterizations. The novel type of metal/CNSs arrays is demonstrated to be a highly stable electrode for supercapacitors. The electrodes of metal/CNSs arrays are assembled into symmetric supercapacitors and exhibit high capacitances of 227 F g −1 (at 2.5 A g −1 ) and an outstanding cycling stability with capacitance retention of 97% after 40 000 cycles.
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