Controlled synthesis of hierarchical graphene-wrapped TiO 2@Co3O4 coaxial nanobelt arrays for high-performance lithium storage

Yongsong Luo, Jingshan Luo, Weiwei Zhou, Xiaoying Qi, Hua Zhang, Denis Y.W. Yu, Chang Ming Li, Hong Jin Fan, Ting Yu*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

142 Citations (Scopus)

Abstract

As one of the most important research areas in lithium-ion batteries (LIBs), well-designed nanostructures have been regarded as key for solving problems such as lithium ion diffusion, the collection and transport of electrons, and the large volume changes during cycling processes. Here, hierarchical graphene-wrapped TiO2@Co3O4 coaxial nanobelt arrays (G-TiO2@Co3O4 NBs) have been fabricated and further investigated as the electrode materials for LIBs. The results show that the yielded G-TiO2@Co3O4 NBs possess a high reversible capacity, an outstanding cycling performance, and superior rate capability compared to TiO2 and TiO2@Co 3O4 nanobelt array (TiO2@Co3O 4 NBs) electrodes. The core-shell TiO2@Co 3O4 NBs may contain many cavities and provide more extra spaces for lithium ion storage. The introduction of graphene into nanocomposite electrodes is favorable for increasing their electrical conductivity and flexibility. The integration of hierarchical core-shell nanobelt arrays and conducting graphene may induce a positive synergistic effect and contribute to the enhanced electrochemical performances of the electrode. The fabrication strategy presented here is facile, cost-effective, and can offer a new pathway for large-scale energy storage device applications.

Original languageEnglish
Pages (from-to)273-281
Number of pages9
JournalJournal of Materials Chemistry A
Volume1
Issue number2
DOIs
Publication statusPublished - Jan 14 2013
Externally publishedYes

ASJC Scopus Subject Areas

  • General Chemistry
  • Renewable Energy, Sustainability and the Environment
  • General Materials Science

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