Manganese Oxide/Graphene Aerogel Composites as an Outstanding Supercapacitor Electrode Material

被引:97
作者
Wang, Chun-Chieh [1 ]
Chen, Hsuan-Ching [1 ]
Lu, Shih-Yuan [1 ]
机构
[1] Natl Tsing Hua Univ, Dept Chem Engn, Hsinchu 30013, Taiwan
关键词
composite electrode; electrochemical deposition; graphene aerogel; manganese oxide; supercapacitor; ELECTROCHEMICAL CAPACITORS; ELECTROPHORETIC DEPOSITION; CHEMICAL-REDUCTION; CARBON NANOTUBES; GRAPHENE SHEETS; OXIDE; DIOXIDE; FILMS; MNO2; ULTRACAPACITORS;
D O I
10.1002/chem.201303483
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Graphene aerogels (GA), prepared with an organic sol-gel process, possessing a high specific surface area of 793 m(2)g(-1), a high pore volume of 3 cm(3)g(-1), and a large average pore size of 17 nm, were applied as a support for manganese oxide for supercapacitor applications. The manganese oxide was electrochemically deposited into the highly porous GA to form MnO2/GA composites. The composites, at a high manganese oxide loading of 61 wt.%, exhibited a high specific capacitance of 410 Fg(-1) at 2 mVs(-1). More importantly, the high rate specific capacitances measured at 1000 mVs(-1) for these composites were two-fold higher than those obtained with samples prepared in the absence of the GA support. The specific capacitance retention ratio, based on the specific capacitance obtained at 25 mVs(-1), was main-tained high, at 85%, even at the high scan rate of 1000 mVs(-1), in contrast with the significantly lower value of 67% for the plain manganese oxide sample. For the cycling stability, the specific capacitance of the composite electrode decayed by only 5% after 50,000 cycles at 1000 mVs(-1). The success of this MnO2/GA composite may be attributed to the structural advantages of high specific surface areas, high pore volumes, large pore sizes, and three-dimensionally well-connected network of the GA support. These structural advantages made possible the high mass loading of the active material, manganese oxide, large amounts of electroactive surfaces for the superficial redox events, fast masstransfer within the porous structure, and well-connected conductive paths for the involved charge transport.
引用
收藏
页码:517 / 523
页数:7
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