Gao et al., Patent Application Serial No. 08/954,372, filed Oct. 20, 1997, entitled Metal Oxide Containing Multiple Dopants and Method of Preparing Same; pp. 1-29. |
Gao et al., Patent Application Serial No. 09/078,849, filed May 14, 1998, entitled Lithium Metal Oxide Containing Multiple Dopants and Method of Preparing Same; pp. 1-29. |
Mishima et al., Development of Cathode and Anode Active Materials for Lithium Ion Battery, Yuasa-Jiho No. 79, Oct. 1995, pp. 13-20. |
D. Gryffroy and R.E. Vandenberghe, Cation distribution, cluster structure and ionic ordering of the spinel series lithium nickel manganese titanium oxide (LiNiO.5Mn1.5-xTixO4) and lithium nickel magnesium manganese oxide (LiNi0.5-yMgyMn1.504); J.Phys. Chem. Solids (1992), 53(6), 777-84 (Abstract only), no month. |
D. Gryffroy ; R.E. Vandenberghe; and D. Poelman; Optical absorption of nickel (Ni2 + (d8)) and manganese (Mn4+ (d3)) in some spinel oxides; Solid State Commun. (1992), 82(7), 497-500 (Abstract only), no month. |
A. Van Der Ven, M.K. Aydinol, G. Ceder, G. Kresse and J. Hafner; First-principles investigation of phase stability in LixCoO2; 1998 The American Physical Society, vol. 58, No. 6, pp. 2975-2987, no month. |
C. Pouillerie, L. Croguennec, Ph. Biensan, P. Willmann and C. Delmas; Synthesis and Characterization of New LiNi1-yMgyO2 Positive Electrode Materials for Lithium-Ion Batteries; Journal of The Electrochemical Society, 147 (6) pp. 2061-2069 (2000), no month. |
T. Ohzuku, A. Ueda and M. Kouguchi; Synthesis and Characterization of LiAl1/4Ni3/4O2 (R3m) for Lithium-Ion (Shuttlecock Batteries); J. Electrochem. Soc., vol. 142, No. 12, pp. 4033-4039, Dec., 1995. |
Krutzsch et al.; Uber das system Li1-x..yCuxMnRuO4; Journal of the Less-Common Metals, 124, pp. 155-164 (1986), no month. |
Krutzsch et al.; Spinelle IM System Li1-2Cu2RhRu1-xMnxO4; Journal of the Less-Common Metals, 132, pp. 37-42 (1987), no month. |
Reimers et al.; Structure and electrochemistry of LixFeyNi1-yO2; Solid State Ionics 61, pp. 335-344 (1993), no month. |
Biensan et al.; Optimized LiNi1-mMmO2 Materials With Improved Safety and Fading; SAFT, ECS Joint International Meeting, Oct. 17-22, 1999. |
Igawa, A. et al., Secondary Lithium Batteries With Lithium and Magnesium Containing Oxide Cathodes, JP 10 241691 A, Chemical Abstracts, Abstracts No. 205207, vol. 129, No. 16, 1998 (XP-002134145), no month. |
Hitachi LTD., Patent Abstracts of Japan, JP 10 241691 A, vol. 1998, No. 14, Dec. 31, 1998. |
International Search Report for PCT/US99/27511, mailed Apr. 7, 2000, E. Siebel. |
Ceder et al., The Stability of Orthorhombic and Monoclinic-Layered LiMnO2, Electrochemical and Solid-State Letters, (1999), pp. 550-552, 2 (11), no month. |
Dahn et al., Structure and Electrochemistry of Li2CrxMn2-xO4 for 1.0 < × > 1.5, J. Electrochem. Soc., Mar., 1998, pp. 851-859, vol. 145, No. 3. |
Jang et al., Stabilization of LiMnO2 in the α-NaFeO2 Structure Type by LiAlO2 Addition, Electrochemical and Solid-State Letters, (1998), pp. 13-16, 1 (1), no month. |
Wickham et al., Crystallographic and Magnetic Properties of Several Spinels Containing Trivalent JA-1044 Manganese, J. Phys. Chem. Solids, Pergamon Press 1958, pp. 351-360, vol. 7, no month. |
De Kock et al., The effect of multivalent cation dopants on lithium magnanese spinel cathodes, Journal of Power Sources, vol. 70, Issue 2, Feb., 1998, pp. 247-252. |
Gummow et al., Improved capacity retention in rechargeable 4 V lithium/lithium manganese oxide (spinel) cells, Solid State Ionics, (1994), no month. |
Tarascon et al., The Spinel Phase of LiMn2O4 as a Cathode in Secondary Lithium Cells, J. Electrochem. Soc., Oct., 1991, vol. 138, No. 10, pp. 2859-2864. |
Padhi et al., Ambient and High-Pressure Structures of LiMnVO4 and Its Mn3+/Mn2+ Redox Energy, Journal of Solid State Chemistry, (1997), 128, Article No. SC967217, pp. 267-272, no month. |
Amine et al., Preparation and Electrochemical Investigation of LiMn1.5Me0.5O4 (Me:Ni,Fe) Cathode Materials For Secondary Lithium Batteries, Fundamental Technology Laboratory, Corporate R&D Center, Japan Storage Battery Co., Ltd. 11-B-34, no date. |
Amine et al., Preparation and electrochemical investigation of LiMn2-xMexO4 (Me: Ni, Fe, and x=0.5, 1) cathode materials for secondary lithium batteries, Journal of Power Sources, 68, (1997), pp. 604-608, no month. |
Pistoia et al., Doped Li-Mn Spinels: Physical/Chemical Characteristics and Electrochemical Performance in Li Batteries, American Chemical Society, 9, (1997), pp. 1443-1450, no month. |
Suzuki et al., Valence Analysis of Transition Metal Ions in Spinel LiMnMO4 (M = Ti, Cr, Mn, Co) by Electron Energy Loss Spectroscopy, J. Phys. Chem. Solids, (1996), vol. 57, No. 12, pp. 1851-1856, no month. |
Rossen et al., Structure and electrochemistry of LixMnyNi1-yO2, Solid State Ionics, (1992), pp. 311-318, no month. |
Banov et al., Lithium Manganese Cobalt Spinel Cathode for 4V Lithium Batteries, 8th International Meeting on Lithium Batteries, Jun. 16-21, 1996, Nagoya Japan, pp. 452-453. |
Moshtev et al., Chemically Desodiated Thiochromites as Cathode Materials in Secondary Lithium Cells, Journal of Power Sources, 26, (1989), pp. 285-292, no month. |
Hernan et al., Use of Li-M-Mn-O [M = Co, Cr, Ti] spinels prepared by a sol-gel method as cathodes in high-voltage lithium batteries, Solid State Ionics, 118, (1999) pp. 179-185, no month. |
Armstrong et al., Synthesis of layered LiMnO2 as an electrode for rechargeable lithium batteries, Nature, Jun. 6, 1996), vol. 381, pp. 499-500. |