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Synthesis of dual-modified Fe-doped and carbon-coated Li4Ti5O12 anode based on industrial H2TiO3 for Li-ion batteries.


ABSTRACT: Spinel Li4Ti5O12 (LTO) is a promising candidate for lithium-ion battery anodes because of its exceptional stability and safety. However, its extensive application is limited by a high comprehensive cost, poor electronic conductivity, and other inherent defects. This work presents a novel synthesis procedure to synthesize carbon-coated Fe-doped LTO composites through carbon reduction, in the presence of Fe-containing industrial H2TiO3 as the titanium source, and glucose as the carbon source. The presence of the Fe-dopant is confirmed through XRD, with Rietveld refinement and EDS experiments. Results show that Fe2+ replaces a portion of Ti4+ after doping, leading to an increase in the LTO cell parameters and the corresponding cell volume. FLTO/C, presents a capacity of 153.79 mAh g-1 at 10 C, and the capacity decay per cycle is only 0.0074% after 1000 cycles at 5 C. Moreover, EIS experiments indicate that the incorporation of Fe and carbon lowers the charge transfer resistance and improves the diffusion and migration of Li+. Notably, since this preparation process requires no additional Fe source as a raw material, it is simple, cost-effective, and suitable for large-scale production and further application.

SUBMITTER: Jiang X 

PROVIDER: S-EPMC10499835 | biostudies-literature | 2023 Sep

REPOSITORIES: biostudies-literature

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Synthesis of dual-modified Fe-doped and carbon-coated Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub> anode based on industrial H<sub>2</sub>TiO<sub>3</sub> for Li-ion batteries.

Jiang Xinyu X   Ma Guangqiang G   Zhu Qinmei Q   Ge Hongwei H   Chen Qiyuan Q   Yan Beilei B   Deng Lin L   Tian Congxue C   Wu Chuanbao C  

Scientific reports 20230913 1


Spinel Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub> (LTO) is a promising candidate for lithium-ion battery anodes because of its exceptional stability and safety. However, its extensive application is limited by a high comprehensive cost, poor electronic conductivity, and other inherent defects. This work presents a novel synthesis procedure to synthesize carbon-coated Fe-doped LTO composites through carbon reduction, in the presence of Fe-containing industrial H<sub>2</sub>TiO<sub>3</sub> as the  ...[more]

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