In this paper we report two innovative lithium ion batteries formed by the combination of a nanosized tin anode and a LiNi(0.5)Mn(1.5)O(4) or a LiNi(0.33)Co(0.33)Mn(1.33)O(2) cathode. The batteries have a very stable cycling response at a high rate of I C with an excellent capacity delivery, i.e., 140 mAhg(-1) and 175 mAhG(-1), respectively. Estimated energy density values are of the order of 150 Whkg(-1) for both batteries.

Novel Lithium Ion Batteries Based on a Tin Anode and on Manganese Oxide Cathodes / Hassoun, Jusef; Reale, Priscilla; Panero, Stefania; Scrosati, Bruno. - In: ISRAEL JOURNAL OF CHEMISTRY. - ISSN 0021-2148. - STAMPA. - 48:3-4(2008), pp. 229-234. [10.1560/ijc.48.3-4.229]

Novel Lithium Ion Batteries Based on a Tin Anode and on Manganese Oxide Cathodes

HASSOUN, JUSEF;REALE, Priscilla;PANERO, Stefania;SCROSATI, Bruno
2008

Abstract

In this paper we report two innovative lithium ion batteries formed by the combination of a nanosized tin anode and a LiNi(0.5)Mn(1.5)O(4) or a LiNi(0.33)Co(0.33)Mn(1.33)O(2) cathode. The batteries have a very stable cycling response at a high rate of I C with an excellent capacity delivery, i.e., 140 mAhg(-1) and 175 mAhG(-1), respectively. Estimated energy density values are of the order of 150 Whkg(-1) for both batteries.
2008
high voltage spinel; lithium ion battery; tin anode
01 Pubblicazione su rivista::01a Articolo in rivista
Novel Lithium Ion Batteries Based on a Tin Anode and on Manganese Oxide Cathodes / Hassoun, Jusef; Reale, Priscilla; Panero, Stefania; Scrosati, Bruno. - In: ISRAEL JOURNAL OF CHEMISTRY. - ISSN 0021-2148. - STAMPA. - 48:3-4(2008), pp. 229-234. [10.1560/ijc.48.3-4.229]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/361600
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