Browse > Article

Preparation of Micro-spherical Activated Carbon with Meso-porous Structure for the Electrode Materials of Electric Double Layer Capacitor  

Um, Eui-Heum (Department of Chemical Engineering, Dankook University)
Lee, Chul-Tae (Department of Chemical Engineering, Dankook University)
Publication Information
Applied Chemistry for Engineering / v.20, no.4, 2009 , pp. 396-401 More about this Journal
Abstract
A micro-spherical activated carbon with meso-pore structure of 52~64% and particle diameter of $2{\sim}10{\mu}m$ was prepared for the improvement electrochemical performance of activated carbon as electrode material for electric double layer capacitor. Resorcinol-formaldehyde resin was used as a carbon source in this preparation. According to electrochemical analysis of EDLC using this activated a carbon with showing effects to reduce charge transfer resistance and to increase rate capability, it was found out that micro-spherical activated carbon could be a good method as well as a material for enhancing the performance of electric double layer capacitor.
Keywords
double capacitor; activated carbon; micro-sphere; meso-pore;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
Times Cited By SCOPUS : 2
연도 인용수 순위
1 C. T. Lee, J. H. Kim, and B. W. Cho, Prospectives of Industrial Chemistry, 2, 16 (1999)
2 S. Wen, M. Jung, O.-S. Joo, and S.-I. Mho, Current Applied Physics, 6, 1012 (2006)   DOI   ScienceOn
3 B. Fang, Y. Z. Wei, and M. Kumagai, Journal of Power Sources, 155, 487 (2006)   DOI   ScienceOn
4 K. Leitner, A. Lerf, M. Winter, J. O. Besenhard, S. Villar-Rodil, F. Suarez-Garcia, A. Martinez-Alonso, and J. M. D. Tascon, Journal of Power Sources, 153, 419 (2006)   DOI   ScienceOn
5 E. Raymundo-Pinero, K. Kierzek, J. Machnikowski, and F. Beguin, Carbon, 44, 2498 (2006)   DOI   ScienceOn
6 H. Teng and S.-C. Wang, Carbon, 38, 817 (2000)   DOI   ScienceOn
7 T. Osaka, X. Liu, and M. Nojima, Journal of Power Sources, 74, 122 (1998)   DOI   ScienceOn
8 S.-W. Hwang and S.-H. Hyun, Journal of Non-Crystalline Solids, 347, 238 (2004)   DOI   ScienceOn
9 J. Hayashi, A. Kazehaya, K. Muroyama, and A. P. Watkinson, Carbon, 38, 1873 (2000)   DOI   ScienceOn
10 S. Mitani, S.-I. Lee, K. Saito, Y. Korai, and I. Mochida, Electrochimica Acta, 51, 5487 (2006)   DOI   ScienceOn
11 M. Hahn, R. Kotz, R. Gallay, and A. Siggel, Electrochimica Acta, 52, 1709 (2006)   DOI   ScienceOn
12 B.-J. Yoon, S.-H. Jeong, K.-H. Lee, H. S. Kim, C. G. Park, and J. H. Han, Chemical Physics Letters, 388, 170 (2004)   DOI   ScienceOn
13 C. Merino, P. Soto, E. Vilaplana-Ortego, J. M. Gomez de Salazar, F. Pico, and J. M. Rojo, Carbon, 43, 551 (2005)   DOI   ScienceOn
14 G. Gryglewicz, J. Machnilkowski, E. L. -Grabowska, G. Lota, and E. Frackowiak, Electrochimica Acta, 50, 1197 (2004)   DOI   ScienceOn
15 N. Nanbu, T. Ebina, H. Uno, S. Ishizawa, and Y. Sasaki, Electrochimica Acta, 52, 1763 (2006)   DOI   ScienceOn
16 H.-B. Gu, J.-U. Kim, H.-W. Song, G.-C. Park, and B.-K. Park, Electrochimica Acta, 45, 1533 (2000)   DOI   ScienceOn
17 T. Hasegawa, S. R. Mukai, Y. Shirato, and H. Tamon, Carbon, 42, 2573 (2004)   DOI   ScienceOn
18 S.-J. Park and W.-Y. Jung, Journal of Colloid and Interface Science, 250, 196 (2002)   DOI   ScienceOn
19 J. K. Sun, M.S. Dissertation, Dankook University, Seoul, Korea (2001)
20 H. Tamon, H. Ishizaka, T. Araki, and M. Okazaki, Carbon, 36, 1257 (1998)   DOI   ScienceOn
21 G. Liu, F. Kang, B. Li, Z. Huang, and X. Chuan, Journal of Physics and Chemistry of Solids, 67, 1186 (2006)   DOI   ScienceOn
22 B. Zhang, J. Liang, C. L. Xu, B. Q. Wei, D. B. Ruan, and D. H. Wu, Materials Letters, 51, 539 (2001)   DOI   ScienceOn
23 C. Lin and J. A. Ritter, Carbon, 35, 1271 (1997)   DOI   ScienceOn
24 T. Osaka and M. Datta, Energy Storage Systems for Electronics, 521, Gordon and Breach Science Publishers, New York (2000)
25 S. R. S. Prabaharan, R. Vimala, and Z. Zainal, Journal of Power Sources, 161, 730 (2006)   DOI   ScienceOn