University of Wollongong
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CNTs@γ-Fe2O3@C composite electrode for high capacity lithium ion storage

journal contribution
posted on 2024-11-16, 05:36 authored by Xiaotong Jiang, Wenlei Guo, Pengyi Lu, Dan Song, A Guo, Jiachen Liu, Ji Liang, Feng Hou
Electrode materials with high specific capacity and cycle stability are the key factors that determine the overall performance of lithium ion batteries (LIBs) for new smart electronic device, and such materials with high performance are still challenging. Here, we report a composite material Carbon nanotube @ Iron oxide @ Carbon (γ-CNTs@γ-Fe 2 O 3 @C) with coaxial cable structure in hydrothermal method with the assistance of glucose. The as-prepared composite materials show superior electrochemical properties with good rate capability and excellent cycling performance, which show the great potential of CNTs@γ-Fe 2 O 3 @C for practical production and application in energy devices.

Funding

Carbon-based catalysts for polysulphide redox reactions in lithium-sulfur batteries

Australian Research Council

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Citation

Jiang, X., Guo, W., Lu, P., Song, D., Guo, A., Liu, J., Liang, J. & Hou, F. (2018). CNTs@γ-Fe2O3@C composite electrode for high capacity lithium ion storage. International Journal of Hydrogen Energy, 43 14027-14033.

Journal title

International Journal of Hydrogen Energy

Volume

43

Issue

30

Pagination

14027-14033

Language

English

RIS ID

122416

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