4.8 Article

Zr4+ Doping in Li4Ti5O12 Anode for Lithium-Ion Batteries: Open Li+ Diffusion Paths through Structural Imperfection

Journal

CHEMSUSCHEM
Volume 7, Issue 5, Pages 1451-1457

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cssc.201301393

Keywords

batteries; electrospinning; lithium; spinel; zirconium

Funding

  1. Automotive Australia 2020 project [1-111]
  2. Conversing Research Program through the Ministry of Science, ICT and Future Planning, Korea [2013K000290]
  3. University of Queensland
  4. Australian National Computational Infrastructure Facility
  5. University of Queensland Postdoctoral Research Fellowship

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One-dimensional nanomaterials have short Li+ diffusion paths and promising structural stability, which results in a long cycle life during Li+ insertion and extraction processes in lithium rechargeable batteries. In this study, we fabricated one-dimensional spinel Li4Ti5O12 (LTO) nanofibers using an electrospinning technique and studied the Zr4+ doping effect on the lattice, electronic structure, and resultant electrochemical properties of Li-ion batteries (LIBs). Accommodating a small fraction of Zr4+ ions in the Ti4+ sites of the LTO structure gave rise to enhanced LIB performance, which was due to structural distortion through an increase in the average lattice constant and thereby enlarged Li+ diffusion paths rather than changes to the electronic structure. Insulating ZrO2 nanoparticles present between the LTO grains due to the low Zr4+ solubility had a negative effect on the Li+ extraction capacity, however. These results could provide key design elements for LTO anodes based on atomic level insights that can pave the way to an optimal protocol to achieve particular functionalities.

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