4.6 Article

Ternary CNTs@TiO2/CoO Nanotube Composites: Improved Anode Materials for High Performance Lithium Ion Batteries

Journal

MATERIALS
Volume 10, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/ma10060678

Keywords

titanium dioxide; cobalt oxide; anodic oxidation; spray pyrolysis; carbon nanotubes; mixed oxide nanotubes; composite materials

Funding

  1. German Federal Ministry of Research and Education through the project ADNAMSES [01DH14002]
  2. Science and Technology Development Fund of Egypt (STDF) under the German-Egyptian Research Fund [5073]
  3. Open Access Fund of the Leibniz Association

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TiO2 nanotubes (NTs) synthesized by electrochemical anodization are discussed as very promising anodes for lithium ion batteries, owing to their high structural stability, high surface area, safety, and low production cost. However, their poor electronic conductivity and low Li+ ion diffusivity are the main drawbacks that prevent them from achieving high electrochemical performance. Herein, we report the fabrication of a novel ternary carbon nanotubes (CNTs)@TiO2/CoO nanotubes composite by a two-step synthesis method. The preparation includes an initial anodic fabrication of well-ordered TiO2/CoO NTs from a Ti-Co alloy, followed by growing of CNTs horizontally on the top of the oxide films using a simple spray pyrolysis technique. The unique 1D structure of such a hybrid nanostructure with the inclusion of CNTs demonstrates significantly enhanced areal capacity and rate performances compared to pure TiO2 and TiO2/CoO NTs, without CNTs tested under identical conditions. The findings reveal that CNTs provide a highly conductive network that improves Li+ ion diffusivity, promoting a strongly favored lithium insertion into the TiO2/CoO NT framework, and hence resulting in high capacity and an extremely reproducible high rate capability.

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