摘要
The use of Li-excess approach can achieve efficient lithium ion storage of cation-disordered rock-salt cathode materials. However, their application is limited by poor intrinsic electronic conductivity and insufficient Li-ion diffusion. Herein, a carbon nanotube is incorporated in the Li-excess Li1.24Fe0.38Ti0.38O2 cathode material, resulting in the formation of refined Li1.24Fe0.38Ti0.38O2 nanoparticles that are well loaded in a continuous conductive network. This facilitates the charge transfer and ion diffusion in the cathode. The as-prepared Li1.24Fe0.38Ti0.38O2/carbon nanotube (LFT/CNT) cathode, therefore, delivers significantly enhanced rate capability with a reversible capacity of 108 mAh g−1 after 200 cycles at 1 C compared to 36 mAh g−1 of the as-prepared LFT cathode. The result of ex situ x-ray diffraction demonstrates the reversible and small lattice volume change of the LFT/CNT cathode during cycling.
源语言 | 英语 |
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页(从-至) | 5029-5036 |
页数 | 8 |
期刊 | Journal of Electronic Materials |
卷 | 50 |
期 | 9 |
DOI | |
出版状态 | 已出版 - 9月 2021 |