Anode material for lithium batteries

Chemistry: electrical current producing apparatus – product – and – Current producing cell – elements – subcombinations and... – Electrode

Reexamination Certificate

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C429S231950, C429S231100, C429S231600, C423S599000

Reexamination Certificate

active

07919207

ABSTRACT:
Primary and secondary Li-ion and lithium-metal based electrochemical cell systems. The suppression of gas generation is achieved through the addition of an additive or additives to the electrolyte system of respective cell, or to the cell itself whether it be a liquid, a solid- or plasticized polymer electrolyte system. The gas suppression additives are primarily based on unsaturated hydrocarbons.

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patent: 2004/0202934 (2004-10-01), Zaghib et al.
patent: 2263711 (1990-10-01), None
patent: 2001-126727 (2001-05-01), None
patent: 2001-126728 (2001-05-01), None
Koseva, I et al., A new strontium lithium titanium oxide, SrLi2Ti6O14. Crystal growth and structure determination., 2002, Chemical Sciences, 57(5), pp. 512-518.
Torres-Martinez, et al., Phase formation and electrical properties in the system BaO-Li2O-TiO2., 1994, Journal of Materials Chemistry, 4(1), pp. 5-8.
Koseva et al. “A New Strontium Lithium Titanium Oxide, SrLi2Ti6O14: Crystal Growth and Structure Determination”,2002 Verlag der Zeitschrift für Naturforschung, Tübingen, pp. 512-518.
Thackeray, Michael, “Spinel Electrodes for Lithium Batteries”,Journal of the American Ceramic Society—Thackerayvol. 82, No. 12, 1999, pp. 3347-3354.
Chen, et al., Studies of Mg-Substituted Li4-xMgxTi5O12Spinel Electrodes (0 ≦ × ≦ 1) for Lithium Batteries,Journal of the Electrochemical Society, vol. 148, No. 1, 2001, pp. A102-A104.
Tong et al., “Catalytic Behavior of Doped MTiO3Catalysts for Oxidative Dehydrogenation of Ethane”,Journal of Natural Gas Chemistry, vol. 7, No. 4, 1998, pp. 283-367.

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