Lithium Insertion in Nanostructured Si 1-x Ti x Alloys

  • Wang Y
  • Cao S
  • Kalinina M
  • et al.
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Abstract

© The Author(s) 2017. Published by ECS. All rights reserved. Nanostructured Si1-xTixalloys (0 ≤ x ≤ 0.3) prepared by ball milling were studied as negative electrode materials in Li cells. The alloys comprised a nanocrystalline and amorphous Si phase and a nanocrystalline C49 TiSi2phase. When x ≥ 0.15 the nanocrystalline Si phase was completely eliminated and such alloys consisted only of amorphous Si and the C49 TiSi2phase. The alloys with x ≥ 0.15 also completely suppressed the formation of Li15Si4during cycling, resulting in good capacity retention, and, unlike other Si transition metal alloys, without introducing noticeable cell polarization. The observed capacity of the Si1-xTixalloys suggested that the TiSi2is an inactive phase toward Li. The Si0.85Ti0.15composition had a high capacity of 1710 Ah/L with 96% capacity retention after 50 cycles, making it attractive for use in Li-ion batteries.

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APA

Wang, Y., Cao, S., Kalinina, M., Zheng, L., Li, L., Zhu, M., & Obrovac, M. N. (2017). Lithium Insertion in Nanostructured Si 1-x Ti x Alloys. Journal of The Electrochemical Society, 164(13), A3006–A3010. https://doi.org/10.1149/2.0491713jes

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