Page 649 - Handbook of Battery Materials
P. 649
References 623
384. Froment, M., Garreau, M., Thevenin, 401. Barthel, J., Krienke, H., Neueder, R.,
J., and Warin, D. (1979) J. Microsc. and Holovko, M.F. (2002) Fluid Phase
Spectrosc. Electron., 4, 111. Equilib., 194–197, 107.
385. Epelboin, I., Froment, M., Garreau, M., 402. Bernard, O., Kunz, W., Turq, P., and
Thevenin, J., and Warin, D. (1980) J. Blum, L. (1992) J. Phys. Chem., 96,
Electrochem. Soc., 127, 2100. 3833.
386. Nazri, G. and Muller, R.H. (1985) J. 403. Turq, P., Blum, L., Bernard, O., and
Electrochem. Soc., 132, 1385. Kunz, W. (1995) J. Phys. Chem., 99,
387. Morigaki, K. (2002) J. Power Sources, 822.
404. Casteel, J.F. and Amis, E.S. (1972) J.
104, 13.
Chem.Eng.Data, 17, 55.
388. Somoano, R., Carter, B.J., Subba Rao,
405. Barthel, J., Gores, H.J., and Schmeer,
S., and Shen, D. (1985) Proceedings of
G. (1979) Ber. Bunsen-Ges. Phys. Chem.,
the 20th Intersociety Energy Conver-
83, 911.
sion Engineering Conference, Vol. 2,
406. Barthel, J. and Neueder, R. (1999) in
p. 2.43. Electrolyte Data Collection (Part 1d),
389. Shen, D.H., Subbaro, S., Nakamuro,
Chemistry Data Series, vol. XII
B.J., Yen, S.P.S., Bankston, C.P., and
(eds R. Eckermann and G. Kreysa),
Halpert, G. (1988) in Primary and Sec- DECHEMA, Frankfurt am Main.
ondary Ambient Temperature Lithium 407. Walden, P. (1906) Z. Phys. Chem., 55,
Batteries, The Electrochemical Society 207.
Proceedings Series, PV 88-6 (eds J.P. 408. Barthel, J., Krienke, H., and Kunz,
Gabano, Z. Takehara, and B. Bro), The W. (1998) Physical Chemistry of Elec-
Electrochemical Society, p. 409. trolyte Solutions, Steinkopff-Verlag,
390. Yen, S.P.S., Shen, D.H., Vasquez, R.P., Darmstadt.
Carter, B.J., and Somoano, R.B. (1984) 409. Takeuchi, M., Kameda, Y.,
in Lithium Batteries, The Electrochemi- Umebayashi, Y., Ogawa, S., Sonoda, T.,
cal Society Proceedings Series, PV 84-1 Ishiguro, S.-C., Fujita, M., and Sano,
(ed. A.N. Dey), The Electrochemical M. (2009) J. Mol. Liq., 148, 99.
Society, Pennington, NJ, p. 403. 410. Susan, M.A.B.H., Noda, A., and
391. Zhang, S.S., Xu, K., and Jow, T.R. Watanabe, M. (2005) in Electrochemical
(2004) J. Power Sources, 129, 275. Aspects of Ionic Liquids (ed. H. Ohno),
392. Zhang, S.S., Xu, K., and Jow, T.R. John Wiley & Sons, Inc., Hoboken, NJ,
(2006) J. Power Sources, 156, 629. p. 5.
393. Aurbach, D. (1989) J. Electrochem. Soc., 411. Fr¨ omling, T., Kunze, M., Sch¨ onhoff,
M., Sundermeyer, J., and Roling, B.
136, 906.
(2008) J. Phys. Chem. B, 112, 12985.
394. Dey, A.N. and Rudd, E.J. (1974) J. Elec-
412. Barthel, J., Graml, H., Neumeier,
trochem. Soc., 121, 1294.
T., Neueder, R., and Syal, V.K., in
395. Morigaki, K., Kabuto, N., Yoshino, K., preparation.
and Ohta, A. (1994) Akira, Proceed-
413. Barthel, J., Graml, H., Neueder, R.,
ings of the 35th Battery Symposium,
Turq, P., and Bernard, O. (1994) Curr.
Nagoya, Japan, pp. 83–84. Top. Solution Chem., 1, 223.
396. Molenat, J. (1969) J. Chim. Phys.
414. Ue, M. (1996) J. Electrochem. Soc., 143,
Phys.-Chim. Biol., 66, 825.
L271.
397. Waisman, E. and Lebowitz, J.L. (1970) 415. Olmstead, W.N. (1981) in Lithium
J. Chem. Phys., 52, 4307. Batteries, The Electrochemical Society
398. Blum, L. (1980) Theor. Chem., 5,1. Proceedings Series, PV 81-4 (ed. H.V.
399. (a) Holovko, M.F. and Kalyushnyi, Venkatasetty), The Electrochemical
Y. (1991) Mol. Phys., 73, 1145 (b) Society, Princeton, NJ, p. 144.
Kalyushnyi, Y. and Holovko, M.F. 416. Angres, I.A. and James, S.D. (1980)
(1993) Mol. Phys., 80, 185. in Proceedings of the Symposium on
400. Bernard, O. and Blum, L. (1996) J. Power Sources for Biomedical Implantable
Chem. Phys., 104, 4746. Applications and Ambient Temperature

