Title of article :
Significantly enhanced charge conduction in electric double layer capacitors using carbon nanotube-grafted activated carbon electrodes
Author/Authors :
Cheng-Wei Huang، نويسنده , , Chih-Ming Chuang، نويسنده , , Jyh-Ming Ting، نويسنده , , Hsisheng Teng، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
5
From page :
406
To page :
410
Abstract :
Carbon nanotube (CNT)-grafting by chemical vapor deposition was conducted to reduce the resistance of activated carbon fiber serving as an electrode for electric double layer capacitors. Sputtering deposition of Ni catalyst particles led to a uniform growth of CNTs on the carbon fiber surface through the tip-growth mechanism. Because sputtering deposition ensures little pore blockage (in comparison with wet-impregnation), the surface area decrease of the carbon fiber due to Ni loading was minimized. By using H2SO4 aqueous solution as the electrolyte, a capacitor cell assembled with the CNT-grafted fiber showed higher electron and electrolyte-ion conductivities relative to a cell assembled with the bare fiber. By increasing the discharging current density from 1 to 150 mA cm−2, the bare fiber exhibited a capacitance loss of 17% while the CNT-grafted fiber showed a mitigated capacitance loss of only 7%. This developed CNT-grafting technique renders activated carbon fiber a promising electrode material for a variety of electrochemical applications.
Keywords :
Conductivity enhancementDouble layer capacitanceCarbon nanotubeActivated carbon fiberElectrochemical capacitorNanotube grafting
Journal title :
Journal of Power Sources
Serial Year :
2008
Journal title :
Journal of Power Sources
Record number :
443098
Link To Document :
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