Page 640 - Handbook of Battery Materials
P. 640
614 17 Liquid Nonaqueous Electrolytes
74. Gofer, Y., Ben-Zion, M., and Aurbach, 91. Zhang, S.S., Xu, K., and Jow, T. (2003)
D. (1992) J. Power Sources, 39, 163. J. Solid State Electrochem., 7, 147.
75. Goldman, J.L., Dominey, L.A., and 92. Zhang, S.S., Xu, K., and Jow, T. (2002)
Koch, V.R. (1989) J. Power Sources, 26, Electrochem. Commun., 4, 928.
519. 93. Zinigrad, E., Larush-Asraf, L.,
76. Nanjundiah, C., Goldman, J., Dominey, Gnanaraj, J.S., Gottlieb, H.E., Sprecher,
L., and Koch, V. (1988) J. Electrochem. M., and Aurbach, D. (2005) J. Power
Soc., 135, 2914. Sources, 146 (1–2), 176.
77. Koch, V.R. (1979) J. Electrochem. Soc., 94. Aurbach, D., Gnanaraj, J.S., Geissler,
126, 181. W., and Schmidt, M. (2004) J. Elec-
78. Somoano, R.B., Carter, B.J., Shen, D., trochem. Soc., 151 (1), A23.
and Yen, S.P.S. (1985) J. Power Sources, 95. Gnanaraj, J.S., Levi, M.D., Gofer, Y.,
14, 53. Aurbach, D., and Schmidt, M. (2003) J.
79. Archuleta, M.M. (1995) J. Power Electrochem. Soc., 150 (4), A445.
Sources, 54, 138. 96. Gnanaraj, J.S., Zinigrad, E., Levi, M.D.,
80. Schmidt, M., Heider, U., Kuehner, A., Aurbach, D., and Schmidt, M. (2003) J.
Power Sources., 119–121, 799.
Oesten, R., Jungnitz, M., Ignat’ev, N.,
97. Xu, K., Zhang, S.S., Jow, T., Xu, W.,
and Sartori, P. (2001) J. Power Sources,
and Angell, C. (2002) Electrochem.
97–98, 557.
Solid-State Lett., 5, A26.
81. Waason, J.R. and Hoffmann, D.K.
(1980) in Proceedings of the Sympo- 98. Xu, W. and Angell, C.A. (2001) Elec-
sium on Power Sources for Biomedical trochem. Solid-State Lett., 4,E1.
Implantable Applications and Ambient 99. Zhang, S.S. (2006) Electrochem. Com-
Temperature Lithium Batteries,The mun., 8, 1423.
100. Zhang, X. and Devine, T.M. (2006) J.
Electrochemical Society Proceedings
Electrochem. Soc., 153, B365.
Series, PV 80-4 (eds B.G. Owens and
101. Xu, K., Zhang, S.S., Poese, B.A., and
N. Margalit), The Electrochemical Jow, T. (2002) Electrochem. Solid-State
Society, Princeton, NJ, p. 309.
82. Amine, K., Liu, J., Kang, S., Lett., 5, A259.
102. Xiao, A., Yang, L., and Lucht, B.L.
Belharouak, I., Hyung, Y., Vissers,
(2007) Electrochem. Solid-State Lett., 10,
D.R., and Henriksen, G.L. (2004) J.
A241.
Power Sources, 129, 14.
103. Qin, Y., Chen, Z., Liu, J., and Amine,
83. Yu, B.-T., Qiu, W.-H., Li, F.-S., and
K. (2010) Electrochem. Solid-State Lett.,
Cheng, L. (2007) J. Power Sources, 166,
13, A11.
499.
104. Zhang, S.S. (2007) ECS Trans., 3, 59.
84. Botte, G.G., White, R.E., and Zhang, Z. 105. Barthel, J., Carl, E., Buestrich, R., and
(2001) J. Power Sources, 97–98, 570. Gores, H.J. (1996) J. Electrochem. Soc.,
85. Gnanaraj, J.S., Zinigrad, E., Levi, M.D., 143, 3565–3572.
Aurbach, D., and Schmidt, M. (2003) J. 106. Xue, Z.-M., Zhao, J.-F., Ding, J., and
Power Sources, 119–121, 799. Chen, C.-H. (2010) J. Power Sources,
86. Wang, Q., Sun, J., Yao, X., and Chen, 195, 853.
C.-H. (2005) Thermochim. Acta, 437, 107. Barthel, J., Buestrich, R., Gores, H.J.,
12. Schmidt, M., and W¨ uhr, M. (1997) J.
87. Reddy, T. and Hossain, S. (2002) in Electrochem. Soc., 144, 3866.
Handbook of Batteries, 3rd edn, Chapter 108. Barthel, J., Schmidt, M., and Gores,
34 (eds D.E. Linden and T.B. Reddy), H.J. (1998) J. Electrochem. Soc., 145,
McGraw-Hill, New York, pp. 1–62. L17.
88. Ue, M. and Mori, S. (1995) J. Elec- 109. Barthel, J., Schmidt, M., and Gores,
trochem. Soc., 142, 2577. H.J. (2000) J. Electrochem. Soc., 147,
89. Ue, M. (1994) J. Electrochem. Soc., 141, 21.
3336. 110. Videa, M., Xu, W., Geil, B., Marzke,
90. Zhang, S.S., Xu, K., and Jow, T. (2002) R., and Angell, C. (2001) J.Electrochem.
J. Electrochem. Soc., 149, A586. Soc., 148, A1352.

