Studies on nanoporous glassy carbon as a new electrochemical capacitor material

被引:27
|
作者
Wen, YH [1 ]
Cao, GP [1 ]
Yang, YS [1 ]
机构
[1] Res Inst Chem Def, Beijing 100083, Peoples R China
关键词
nanoporous carbon; microstructure; electrochemical properties;
D O I
10.1016/j.jpowsour.2005.02.001
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A nanoporous glassy carbon (NPGC) used as a new electrochemical capacitor material has been developed and prepared from a novolac phenolic resin. This new porous carbon has a high specific capacity due to its large surface area and a high power density due to its nice bulk conductivity and nanoporous structure. In this paper, main factors that influence the pore structure and electrochemical performance of NPGCs were systematically investigated. The results showed that the porosity of carbonized resin increased with curing temperature up to 225 degrees C at which the resin can be cross-linked fully, facilitating activation agent molecules to diffuse inward. It was also found that high carbonization temperature helped crystallization of carbonized products, but the shrinkage of carbon skeleton made the extent of activation decrease. Meantime, increasing activation temperature may accelerate reaction rate and prolonging activation time may increase the extent of activation. However, too high activation temperature and too long activation time can make the carbon matrix cracked and distorted. Therefore, a maximum capacity of 203 F g(-1) and a conductivity of about 10 S cm(-1) was obtained for the NPGC sample prepared under suitable conditions, resulting in high power densities (6.5 kW kg(-1) carbon). (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:121 / 128
页数:8
相关论文
共 50 条
  • [21] New insights on the electrochemical mechanism of epinephrine on glassy carbon electrode
    Bacil, Raphael P.
    Garcia, Pedro H. M.
    Pires Serrano, Silvia Helena
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2022, 908
  • [22] Preparation of the Carbon Nanotube/Carbon Fiber Composite and Application as the Electrode Material of the Electrochemical Super Capacitor
    Jiang Qi
    Yang Rong
    Fu GuangGang
    Xie DeYu
    Huang Bin
    He Zheng Wen
    Zhao Yong
    FUNCTIONAL AND ELECTRONIC MATERIALS, 2011, 687 : 158 - 162
  • [23] Cresol-formaldehyde based carbon aerogel as electrode material for electrochemical capacitor
    Zhu, Yudong
    Hu, Haoquan
    Li, Wen-Cui
    Zhang, Xiaoyong
    JOURNAL OF POWER SOURCES, 2006, 162 (01) : 738 - 742
  • [24] Glucose-Based Activated Carbon Spheres as Electrode Material for Electrochemical Capacitor
    Du, Xuan
    Ma, Shuhui
    Zhao, Wei
    Zheng, Zhilin
    Qi, Tao
    Wang, Yi
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2017, 17 (06) : 3835 - 3841
  • [25] Electrochemical behavior of activated-carbon capacitor material loaded with nickel oxide
    Yuan, GH
    Jiang, ZH
    Aramata, A
    Gao, YZ
    CARBON, 2005, 43 (14) : 2913 - 2917
  • [26] Computer simulation studies of nanoporous carbon-based electrochemical capacitors
    Li, Zhujie
    Mendez-Morales, Trinidad
    Salanne, Mathieu
    CURRENT OPINION IN ELECTROCHEMISTRY, 2018, 9 : 81 - 86
  • [27] Electrochemical impedance spectroscopy studies of modified glassy carbon in acidic solutions
    Ortiz, B
    Belanger, D
    PROCEEDINGS OF THE SYMPOSIUM ON THE ELECTROCHEMICAL DOUBLE LAYER, 1997, 97 (17): : 365 - 371
  • [28] Communication-Highly Sensitive Glassy Carbon Electrode Altered by Nanoporous Gold for the Electrochemical Detection of Nitrite
    Zhang, An
    Yang, Zhipeng
    Chen, Yuanyuan
    Schuetzenduebe, Peter
    Huang, Yuan
    Liu, Yongchang
    Wang, Zumin
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2020, 167 (08)
  • [29] Bipolar Glassy Carbon Electrochemical Double-layer Capacitor: 100,000 Cycles Demonstrated
    Paul Scherrer Institute, General Energy, CH-5232 Villigen PSI, Switzerland
    J. New Mater. Electrochem. Syst., 4 (273-277):
  • [30] Bipolar glassy carbon electrochemical double-layer capacitor:: 100,000 cycles demonstrated
    Bärtsch, M
    Braun, A
    Schnyder, B
    Kötz, R
    Haas, O
    JOURNAL OF NEW MATERIALS FOR ELECTROCHEMICAL SYSTEMS, 1999, 2 (04) : 273 - 277