High-performing SnaCo nanowire electrodes as anodes for lithium-ion batteries

The preparation of Sn2Co3 nanowire arrays (NWs) electrogrown inside the channels of polycarbonate membranes and their characterization as anodes for Li-ion batteries both in half-cell vs. Li and in battery configuration are reported. The Sn2Co3 NW electrodes tested by deep galvanostatic charge/disch...

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Veröffentlicht in:Journal of power sources 2012-08, Vol.211, p.103-107
Hauptverfasser: Ferrara, Germano, Arbizzani, Catia, Damen, Libero, Guidotti, Martina, Lazzari, Mariachiara, Vergottini, Francesco Gioacchino, Inguanta, Rosalinda, Piazza, Salvatore, Sunseri, Carmelo, Mastragostino, Marina
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Sprache:eng
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Zusammenfassung:The preparation of Sn2Co3 nanowire arrays (NWs) electrogrown inside the channels of polycarbonate membranes and their characterization as anodes for Li-ion batteries both in half-cell vs. Li and in battery configuration are reported. The Sn2Co3 NW electrodes tested by deep galvanostatic charge/discharge cycles in ethylene carbonate-dimethylcarbonate (1: 1) a LiPF6 1 M displayed 80% capacity retention after 200 cycles at C/2 and 30 [deg]C, and a high charge and discharge rate capability at C-rate from C/3 (0.33 A/g) to 10C (10 A/g) at 30[deg] and 10 [deg]C. Electrodes with the highest alloy loading delivered up to 0.6 mAh cma2 at C/2. The performance of these electrodes in battery configuration with LiFePO4 as cathode is also reported, as well as the effect of the vinylene carbonate additive on the charge/discharge coulombic efficiency of the Sn2Co3 NWs.
ISSN:0378-7753
DOI:10.1016/j.jpowsour.2012.03.066