Development of a high-power lithium-ion battery

Safety is a key concern for a high-power energy storage system such as will be required in a hybrid vehicle. Present lithium-ion technology, which uses a carbon/graphite negative electrode, lacks inherent safety for two main reasons: (1) carbon/graphite intercalates lithium at near lithium potential...

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Veröffentlicht in:Journal of power sources 1999-09, Vol.81, p.902-905
Hauptverfasser: Jansen, A.N, Kahaian, A.J, Kepler, K.D, Nelson, P.A, Amine, K, Dees, D.W, Vissers, D.R, Thackeray, M.M
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Sprache:eng
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Zusammenfassung:Safety is a key concern for a high-power energy storage system such as will be required in a hybrid vehicle. Present lithium-ion technology, which uses a carbon/graphite negative electrode, lacks inherent safety for two main reasons: (1) carbon/graphite intercalates lithium at near lithium potential, and (2) there is no end-of-charge indicator in the voltage profile that can signal the onset of catastrophic oxygen evolution from the cathode (LiCoO 2). Our approach to solving these safety/life problems is to replace the graphite/carbon negative electrode with an electrode that exhibits stronger two-phase behavior further away from lithium potential, such as Li 4Ti 5O 12. Cycle-life and pulse-power capability data are presented in accordance with the Partnership for a New Generation of Vehicles (PNGV) test procedures, as well as a full-scale design based on a spreadsheet model.
ISSN:0378-7753
1873-2755
DOI:10.1016/S0378-7753(99)00268-2