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Spherical Shell with CNTs Network Structuring Fe-Based Alluaudite Na Fe (SO ) Cathode and Novel Phase Transition Mechanism for Sodium-Ion Battery.

作者信息

Yang Wei, Liu Qi, Hou Lijuan, Yang Qiang, Mu Daobin, Tan Guoqiang, Li Li, Chen Renjie, Wu Feng

机构信息

Beijing Institute of Technology, Beijing Institute of Technology School of Materials Science and Engineering, Beijing, 100081, China.

出版信息

Small. 2024 Feb;20(5):e2306595. doi: 10.1002/smll.202306595. Epub 2023 Sep 21.

Abstract

Iron-based sulfate cathodes of alluaudite Na Fe (SO ) (NFS) in sodium-ion batteries with low cost, steady cycling performance, and high voltage are promising for grid-scale energy storage systems. However, the poor electronic conductivity and the limited understanding of the phase-evolution of precursors hinder obtaining high-rate capacity and the pure phase. Distinctive NFS@C@n%CNTs (n = 1, 2, 5, 10) sphere-shell conductive networks composite cathode materials are constructed creatively, which exhibit superior reversible capacity and rate performance. In detail, the designed NFS@C@2%CNTs cathode delivers an initial discharge capacity of 95.9 mAh g at 0.05 C and up to 60 mAh g at a high rate of 10 C. The full NFS@C@2%CNTs//HC cell delivers a practical operating voltage of 3.5 V and mass-energy density of 140 Wh kg at 0.1 C, and it can also retain 67.37 mAh g with a capacity retention rate of 96.4% after 200 cycles at 2 C. On the other hand, a novel combination reaction mechanism is first revealed for forming NFS from the mixtures of Na Fe(SO ) ·nH O (n = 2, 4) and FeSO ·H O during the sintering process. The inspiring results would provide a novel perspective to synthesize high-performance alluaudite sulfate and analogs by aqueous methods.

摘要

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