1 Fetcenko, M.A., Ovshinsky, S.R., Reichman, B., Young, K., Fierro, C., Koch, J., Zallen, A., Mays, W., Ouchi, T., “Recent advances in NiMH battery technology”, J. Power Sources, 165, 544-551(2007). 2 Yasuoka, S., Magari, Y., Murata, T., Tanaka, T., Ishida, J., Nakamura, H., Nohma, T., Kihara, M., Baba, Y., Teraoka, H., “Development of high-capacity nickel-metal hydride batteries using superlattice hydrogenabsorbing alloys”, J. Power Sources, 156, 662-666(2006). 3 K hler, U., Antonius, C., B uerlein, P., “Advances in alkaline batteries”, J. Power Sources, 127(1/2), 45-52(2004). 4 Fierro, C., Zallen, A., Koch, J., Fetcenko, M.A., “The influence of nickel-hydroxide composition and microstructure on the high-temperature performance of nickel metal hydride batteries”, J. Electrochem. Soc., 153(3), A492-A496(2006). 5 Zhu, W.H., Ke, J.J., Yu, H.M., Zhang, D.J., “A study of the electrochemistry of nickel hydroxide electrodes with various additives”, J. Power Sources, 56(1), 75-79(1995). 6 Tanaka, T., Kuzuhara, M., Watada, M., Oshitani, M., “Effect of rare earth oxide additives on the performance of NiMH batteries”, J. Alloy & Compounds, 408-412, 323-326(2006). 7 Nan, J.M., Hou, X.L., Yang, M.J., Han, D.M., Li, W.S., “Effect of rare-earth elements on the temperature performances of power nickel-metal hydride batteries for electric tools”, J. Electrochem. Soc., 153(6), A1159-A1164(2006). 8 He, X.M., Jiang, C.Y., Li, W., Wang, C.R., “Co/Yb hydroxide coating of spherical Ni(OH)2 cathode materials for Ni–MH batteries at elevated temperatures”, J. Electrochem. Soc., 153(3), A566-A569(2006). 9 Ayeb, A., Notten, P.H.L., “The oxygen evolution kinetics in sealed rechargeable NiMH batteries”, Electrochim. Acta, 53(19), 5836-5847(2008). 10 Ramesh, T.N., Kamath, P.V., “Nickel oxyhydroxide/manganese dioxide composite as a candidate electrode material for alkaline secondary cells”, J. Power Sources, 175(1), 625-629(2008). 11 Pralong, V., Delahaye-Vidal, A., Chabre, Y., Beaudoin, B., Tarascon, J. M., “The outcome of cobalt in the nickel–cobalt oxyhydroxide electrodes of alkaline batteries”, J. Solid State Chem., 162(2), 270-281(2001). 12 Takee, M., Tadokoro, M., Ise, T., Yamawaki, A., “Nickel-metal hydride storage cell having a high capacity and an excellent cycle characteristic and manufacturing”, U.S. Pat., 6368748(2002). 13 Berlureau, T., Liska, J.L., “Sealed nickel-metal hydride storage cell”, U. S. Pat., 6444249(2002). 14 Liu, S.Y., Dougal, R.A., Weidner, J.W., Gao, L.J., “A simplified physics-based model for nickel hydrogen battery”, J. Power Sources, 141(2), 326-339(2005). 15 Motori, A., Sandrolini, F., Davolio, G., “Electrical properties of nickel hydroxide for alkaline cell systems”, J. Power Sources, 48(3), 361-370(1994). 16 Skipworth, E., Donne, S.W., “Role of graphite in self-discharge of nickel(III) oxyhydroxide”, J. Power Sources, 174(1), 186-190(2007). 17 Fu, X.Z., Zhu, Y.J., Xu, Q.C., Li, J., Pan, J.H., Xu, J.Q., Lin, J.D., Liao, D.W.,“Nickel oxyhydroxides with various oxidation states prepared by chemical oxidation of spherical β-Ni(OH)2”, Solid State Ionics, 178(13/14), 987-993(2007). 18 Mancier, V., Willmann, P., Metrot, A., “A semi theoretical approach of the second plateau appearing during the discharge of aged nickel oxyhydroxide electrodes”, J. Power Sources, 85(2), 181-185(2000). 19 Komath, M., Thomas, S., Cherian, K.A., Ray, A., “Preparation of γ-nickel oxyhydroxide through high temperature reaction of nickel with anhydrous sodium hydroxide”, Mater. Chem. Phys., 36(1/2), 190-193(1993). 20 Sun, Y.Z., Pan, J.Q., Wan, P.Y., Xu, C.C., Liu, X.G., “Electrolytic preparation, structure characterization and electrochemical performance of NiOOH”, Chin. J. Chem. Eng., 15(2), 262-267(2007). |