Study of the Process of Reversible Insertion of Lithium into Nanostructured Materials Based on Germanium

Nanostructured germanium samples prepared by electrochemical deposition from aqueous solution of 0.05 М germanium oxide onto titanium substrate are tested as the negative electrodes of lithium-ion batteries. The reversible capacity in the process of lithium insertion-extraction is found to be about...

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Veröffentlicht in:Russian journal of electrochemistry 2018-12, Vol.54 (12), p.1111-1116
Hauptverfasser: Gavrilin, I. M., Smolyaninov, V. A., Dronov, A. A., Gavrilov, S. A., Trifonov, A. Yu, Kulova, T. L., Kuz’mina, A. A., Skundin, A. M.
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Sprache:eng
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Zusammenfassung:Nanostructured germanium samples prepared by electrochemical deposition from aqueous solution of 0.05 М germanium oxide onto titanium substrate are tested as the negative electrodes of lithium-ion batteries. The reversible capacity in the process of lithium insertion-extraction is found to be about 1180 mA h/g, which corresponds to the formation of Li 3.05 Ge alloy. The effective diffusion coefficient of lithium in germanium is shown to be 1.2 × 10 –11 cm 2 /s. The degradation of the germanium electrode upon cycling at 0.6 С rate is less than 0.3% per cycle.
ISSN:1023-1935
1608-3342
DOI:10.1134/S1023193518120054