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Engineering a ternary one-dimensional Fe 2 P@SnP 0.94 @MoS 2 mesostructure through magnetic-field-induced self-assembly as a high-performance lithium-ion battery anode.

Jinyun LiuTing ZhouTianli HanLiying ZhuYan WangYunfei HuZhonghua Chen
Published in: Chemical communications (Cambridge, England) (2022)
Engineering energy-storage materials possessing high-speed electronic and ionic transport properties for secondary batteries is significant. Here, we develop a ternary one-dimensional mesostructured anode composed of MoS 2 nanosheets grown in situ on SnP 0.94 nanotubes infilled with Fe 2 P nanospheres, which is prepared by magnetic-field-induced self-assembly. The mesostructure provides fast transport pathways for electrons, as verified through a galvanostatic intermittent titration technique; and the voids effectively alleviate the volume change, enabling long-term cycling stability. The Fe 2 P@SnP 0.94 @MoS 2 anode displays a high capacity of 797.5 mA h g -1 after cycling 800 times at 2 A g -1 , a coulombic efficiency of 99.4%, and stable rate-performance after three rounds of cycling. Furthermore, the anode shows high capacities at different temperatures, indicating that the composite presented here has a promising potential for use in real conditions.
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