Page 429 - Handbook of Battery Materials
P. 429
References 401
properties can be realized by reducing the dead lithium. Practical levels of lithium
cycling efficiency and safety could be achieved simultaneously by the same technical
breakthrough. This will be realized by a wholehearted effort to develop a method of
anode construction, a new electrolyte, and a new cell structure. Another interesting
area of study is the investigation of new anode materials whose energy density is
as close as possible to that of pure lithium metal.
References
1. Tobishima, S., Sakurai, Y., and Yamaki, 16. Yen, S.P.S., Shen, D., Vasquez, R.P.,
J. (1997) J. Power Sources, 68, 455. Grunthaner, F.J., and Samoano, R.B.
2. Yen, S.P.S., Dhen, D., Vansqu´ ez, R.P., (1981) J. Electrochem. Soc., 128, 1434.
Grunthaner, F.J., and Somoano, R.B. 17. Aurbach, D. (1989) J. Electrochem. Soc.,
(1981) J. Electrochem. Soc., 128, 1434. 136, 1606.
3. Hirayama, S., Hiraga, H., Otsuka, K., 18. Aurbach, D., Youngman, O., Gofer, Y.,
Ikeda, N., and Sasaki, M. (1993) Ex- and Meitav, A. (1990) Electrochim. Acta,
tended Abstracts of the 34th Battery 35, 625.
Symposium in Japan, Abstract No. 19. Ely, Y.E. and Aurbach, D. (1992) Pro-
1A06, p. 13. ceedings of the Symposiumon High Power
4. Yamamoto, N., Saito, K., Ishibashi, T., Ambient Temperature Lithium Batteries,
Honjo, M., Fujieda, T., and Higuchi, S. The Electrochemical Society, p. 157.
20. Itoh, T., Nishina, T., Matsue, T., and
(1993) Extended Abstracts of the 34th
Battery Symposium in Japan, Abstract Uchida, I. (1995) Extended Abstracts of
the 36th Battery Symposium in Japan,
No.1A07, p. 15.
Abstract No. 2B19, p. 171.
5. Harris, W.R. (1958) Ph. D. thesis, Uni-
versity of California, Berkeley. 21. Aurbach, D., Zaban, A., Gofer, Y., Ely,
Y.E., Weissman, I., Chusid, O., and
6. Dey, A.N. and Rudd, E.J. (1974) J. Elec-
Abramson, O. (1995) J. Power Sources,
trochem. Soc., 121, 1294.
54, 76.
7. Rauh, R.D. and Brummer, S.B. (1977)
22. Shen, D.H., Subbarao, S., Deligiannis,
Electrochim. Acta, 22, 75.
8. Peled, E. (1979) J. Electrochem. Soc., F., and Halpert, G. (1989) Proceedings
of the Symposium on Materials and
126, 2047.
Processes for Lithium Batteries,The
9. Dey, A.N. (1977) Thin Solid Films, 43, Electrochemical Society, p. 223.
131.
23. Selim, R. and Bro, P. (1974) J. Elec-
10. Nazri, G. and Muller, R.H. (1985)
trochem. Soc., 121, 1457.
J. Electrochem. Soc., 132, 2050.
24. (a)Klemann,L.P.and Newman,G.H.
11. Aurbach, D., Daroux, M.L., Faguy,
(1981) Proceedings of the Symposium on
P.W., and Yeager, E. (1987) J. Elec- Lithium Batteries, vol. 81-4, The Elec-
trochem. Soc., 134, 1611. trochemical Society Inc., p. 189; (b)
12. Abraham, K.M. and Chaudhri, S.M. Abraham, K.M., Goldman, J.L., and
(1986) J. Electrochem. Soc., 133, 1307. Natwig, D.L. (1982) J. Electrochem. Soc.,
13. Goldman, J.L., Mank, R.M., Young, 129, 2404.
J.H., and Koch, V.R. (1980) J. Elec- 25. Yamaki, J., Arakawa, M. Tobishima, S.,
trochem. Soc., 127, 1461. and Hirai, T. (1987) Proceedings of the
14. Aurbach, D., Daroux, M.L., Faguy, Symposium on Lithium Batteries,vol.
P.W., and Yeager, E. (1986) J. Elec- 87-1, The Electrochemical Society Inc.,
trochem. Soc., 135, 1307. p. 266.
15. Odziemkowski, M., Krell, M., and 26. Tobishima, S., Yamaki, J., Yamaji, A.,
Irish, D.E. (1992) J. Electrochem. Soc., and Okada, T. (1984) J. Power Sources,
139, 3052. 13, 261.