Issue
Korean Journal of Chemical Engineering,
Vol.19, No.4, 638-644, 2002
A Study of Electrochemical Kinetics of Lithium Ion in Organic Electrolytes
Limiting current densities equivalent to the transport-controlling step of lithium ions in organic electrolytes were measured by using a rotating disk electrode (RDE). The diffusion coefficients of lithium ion in the electrolyte of PC/LiClO4, EC : DEC/LiPF6 and EC : DMC/LiPF6 were determined by the limiting current density data according to the Levich equation. The diffusion coefficients increased in the order of PC/LiClO4
[References]
  1. Aurbach D, Zaban A, Gofer Y, Ein-Eli Y, Weissman I, Chusid O, Abramson O, J. Power Sources, 54, 76, 1995
  2. Aurbach D, Markovsky B, Shechter A, Eineli Y, Cohen H, J. Electrochem. Soc., 143(12), 3809, 1996
  3. Blint RJ, J. Electrochem. Soc., 144(3), 787, 1997
  4. Blomgren GE, "Lithium Batteries," (ed. by Gabano J.P.) Chap. 2, Academic Press Inc. (London) Ltd., 1993
  5. Bockris J, Reddy A, "Modern Electrochemistry," Plenum Press, New York, 1973
  6. Cazzanelli E, Croce F, Appetecchi GB, Benevelli F, Mustarelli P, J. Chem. Phys., 107(15), 5740, 1997
  7. Cussler EL, "Diffusion, Mass Transfer in Fluid Systems," Cambridge Univ. Press, 118, 1984
  8. Dominey LA, "Lithium Batteries, New Materials, Developments and Perspectives, Industrial Chemistry Liblary," (Edited by G. Pistoia) Vol. 5, Chap. 4, Elsevier Amsterdam, 1994
  9. Eineli Y, Thomas SR, Koch VR, J. Electrochem. Soc., 143(9), L195, 1996
  10. Eineli Y, Thomas SR, Chadha R, Blakley TJ, Koch VR, J. Electrochem. Soc., 144(3), 823, 1997
  11. Horvath AL, "Handbook of Aqueous Electrolyte Solutions," Ellis Horwood Limited, New York, 1985
  12. Ishikawa M, Morita M, Asao M, Matsuda Y, J. Electrochem. Soc., 141(5), 1105, 1994
  13. Jung UH, Lee SI, Chun HS, Lee HH, Lee KY, Kim MH, "Electrochemical Characteristics of Electrolytes for Lithium Ion Battery," Proceeding of Korean Electrochemical Society, Seoul, Korea, Oct., 141, 1998
  14. Kanamura K, Takezawa H, Shiraishi S, Takehara Z, J. Electrochem. Soc., 144(6), 1900, 1997
  15. Langenhuizen NPW, J. Electrochem. Soc., 145(9), 3094, 1998
  16. Lee SI, Lee JS, Park JH, Park GP, Lim JH, Lee JK, Chun HS, HWAHAK KONGHAK, 38(2), 129, 2000
  17. Matsuda Y, Morita M, Tachihara F, Bull. Chem. Soc. Jpn., 59, 1967, 1986
  18. Nam SC, Lim YC, Park HY, Jeon EJ, Yoon YS, Cho WI, Cho BW, Yun KS, Korean J. Chem. Eng., 18(5), 673, 2001
  19. Naoi K, Mori M, Shinagawa Y, J. Electrochem. Soc., 143(8), 2517, 1996
  20. Quickenden TI, Jiang X, Electrochim. Acta, 29, 639, 1984
  21. Uceda DA, O'Keefe TJ, Cole ER, J. Electrochem. Soc., 137, 1397, 1990
  22. Verbrugge MW, Koch BJ, J. Electrochem. Soc., 141(11), 3053, 1994
  23. Wang X, Iyoda M, Nishida T, Uchida I, "Application of Microelectrode Technique to Kinetic Study of the Lithium Deposition/Dissolutionand Alloying in Organic Solution," Ext. Abstracts of 8th International Meeting on Lithium Batteries, Nagoya, Japan, 16-21, June, 385, 1996
  24. Zhang SS, Angell CA, J. Electrochem. Soc., 143(12), 4047, 1996