We focus on the synthesis by ball milling and on the electrochemical characterization of nanocrystalline bimetallic and composite materials to be employed as anodes in Li ion batteries. Ni 3Sn 4 and Ni 3Sn 2 based compounds were obtained by ball milling of three different Ni-Sn mixtures. The properties of the resulting anodes for Li ion batteries were evaluated as a function of composition. Moreover, a biphasic system is presented, with CoSn 2 and CoSn type structures, arising from the synthesis of the Sn 31Co 28C 41 composition. When cycled in a Li cell, this material showed a high reversible specific capacity, about 450 mA h g -1, and a very good electrochemical and structural stability, making it of interest for application purposes. © 2008 Springer-Verlag.

Mechanochemical synthesis and electrochemical properties of nanostructured electrode materials for Li ion batteries / G., Mulas; S., Enzo; C., Bonatto Minella; E., Arca; C., Gerbaldi; N., Penazzi; S., Bodoardo; Hassoun, Jusef; Panero, Stefania. - In: JOURNAL OF SOLID STATE ELECTROCHEMISTRY. - ISSN 1432-8488. - STAMPA. - 13:2(2009), pp. 239-243. [10.1007/s10008-008-0529-z]

Mechanochemical synthesis and electrochemical properties of nanostructured electrode materials for Li ion batteries

HASSOUN, JUSEF;PANERO, Stefania
2009

Abstract

We focus on the synthesis by ball milling and on the electrochemical characterization of nanocrystalline bimetallic and composite materials to be employed as anodes in Li ion batteries. Ni 3Sn 4 and Ni 3Sn 2 based compounds were obtained by ball milling of three different Ni-Sn mixtures. The properties of the resulting anodes for Li ion batteries were evaluated as a function of composition. Moreover, a biphasic system is presented, with CoSn 2 and CoSn type structures, arising from the synthesis of the Sn 31Co 28C 41 composition. When cycled in a Li cell, this material showed a high reversible specific capacity, about 450 mA h g -1, and a very good electrochemical and structural stability, making it of interest for application purposes. © 2008 Springer-Verlag.
2009
ball milling; kinetics; li ion batteries; nanostructured materials
01 Pubblicazione su rivista::01a Articolo in rivista
Mechanochemical synthesis and electrochemical properties of nanostructured electrode materials for Li ion batteries / G., Mulas; S., Enzo; C., Bonatto Minella; E., Arca; C., Gerbaldi; N., Penazzi; S., Bodoardo; Hassoun, Jusef; Panero, Stefania. - In: JOURNAL OF SOLID STATE ELECTROCHEMISTRY. - ISSN 1432-8488. - STAMPA. - 13:2(2009), pp. 239-243. [10.1007/s10008-008-0529-z]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/364699
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