Highly Electroconductive Mesoporous Graphene Nanofibers and Their Capacitance Performance at 4 V

被引:192
作者
Cui, Chaojie [1 ]
Qian, Weizhong [1 ]
Yu, Yuntao [1 ]
Kong, Chuiyan [1 ]
Yu, Bo [1 ]
Xiang, Lan [1 ]
Wei, Fei [1 ]
机构
[1] Tsinghua Univ, Dept Chem Engn, Beijing Key Lab Green Chem React Engn & Technol, Beijing 100084, Peoples R China
关键词
WALLED CARBON NANOTUBES; SUPERCAPACITOR ELECTRODES; HIGH-ENERGY; COMPACT; OXIDE; POWER; SIZE;
D O I
10.1021/ja412219r
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We report the fabrication of one-dimensional highly electroconductive mesoporous graphene nanofibers (GNFs) by a chemical vapor deposition method using MgCO3 center dot 3H(2)O fibers as the template. The growth of such a unique structure underwent the first in situ decomposition of MgCO3 center dot 3H(2)O fibers to porous MgO fibers, followed by the deposition of carbon on the MgO surface, the removal of MgO by acidic washing, and the final self-assembly of wet graphene from single to double layer in drying process. GNFs exhibited good structural stability, high surface area, mesopores in large amount, and electrical conductivity 3 times that of carbon nanotube aggregates. It, used as an electrode in a 4 V supercapacitor, exhibited high energy density in a wide range of high power density and excellent cycling stability. The short diffusion distance for ions of ionic liquids electrolyte to the surface of GNFs yielded high surface utilization efficiency and a capacitance up to 15 mu F/cm(2), higher than single-walled carbon nanotubes.
引用
收藏
页码:2256 / 2259
页数:4
相关论文
共 39 条
  • [1] Chen ZP, 2011, NAT MATER, V10, P424, DOI [10.1038/NMAT3001, 10.1038/nmat3001]
  • [2] Monolithic Carbide-Derived Carbon Films for Micro-Supercapacitors
    Chmiola, John
    Largeot, Celine
    Taberna, Pierre-Louis
    Simon, Patrice
    Gogotsi, Yury
    [J]. SCIENCE, 2010, 328 (5977) : 480 - 483
  • [3] 3D Macroporous Graphene Frameworks for Supercapacitors with High Energy and Power Densities
    Choi, Bong Gill
    Yang, MinHo
    Hong, Won Hi
    Choi, Jang Wook
    Huh, Yun Suk
    [J]. ACS NANO, 2012, 6 (05) : 4020 - 4028
  • [4] Raman spectrum of graphene and graphene layers
    Ferrari, A. C.
    Meyer, J. C.
    Scardaci, V.
    Casiraghi, C.
    Lazzeri, M.
    Mauri, F.
    Piscanec, S.
    Jiang, D.
    Novoselov, K. S.
    Roth, S.
    Geim, A. K.
    [J]. PHYSICAL REVIEW LETTERS, 2006, 97 (18)
  • [5] Molecular ordering of organic molten salts triggered by single-walled carbon nanotubes
    Fukushima, T
    Kosaka, A
    Ishimura, Y
    Yamamoto, T
    Takigawa, T
    Ishii, N
    Aida, T
    [J]. SCIENCE, 2003, 300 (5628) : 2072 - 2074
  • [6] Interfacial capacitance and electronic conductance of activated carbon double-layer electrodes
    Hahn, M
    Baertschi, M
    Barbieri, O
    Sauter, JC
    Kötz, R
    Gallay, R
    [J]. ELECTROCHEMICAL AND SOLID STATE LETTERS, 2004, 7 (02) : A33 - A36
  • [7] Probing Layer Number and Stacking Order of Few-Layer Graphene by Raman Spectroscopy
    Hao, Yufeng
    Wang, Yingying
    Wang, Lei
    Ni, Zhenhua
    Wang, Ziqian
    Wang, Rui
    Koo, Chee Keong
    Shen, Zexiang
    Thong, John T. L.
    [J]. SMALL, 2010, 6 (02) : 195 - 200
  • [8] Electrochemical reactivity in room-temperature ionic liquids
    Hapiot, Philippe
    Lagrost, Corinne
    [J]. CHEMICAL REVIEWS, 2008, 108 (07) : 2238 - 2264
  • [9] Compact and Light Supercapacitor Electrodes from a Surface-Only Solid by Opened Carbon Nanotubes with 2 200 m2 g-1 Surface Area
    Hiraoka, Tatsuki
    Izadi-Najafabadi, Ali
    Yamada, Takeo
    Futaba, Don N.
    Yasuda, Satoshi
    Tanaike, Osamu
    Hatori, Hiroaki
    Yumura, Motoo
    Iijima, Sumio
    Hata, Kenji
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2010, 20 (03) : 422 - 428
  • [10] Huang J. S., 2013, SUPERCAPACITORS MAT, P191