阳极
电池(电)
钠
离子
钠离子电池
材料科学
合理设计
无机化学
化学
纳米技术
冶金
物理
电极
有机化学
物理化学
热力学
功率(物理)
法拉第效率
作者
Yuteng Gong,Yufeng Sun,Yu Li,Chuan Wu,Ying Bai
标识
DOI:10.1002/adsu.202400679
摘要
Abstract Among various transition metal sulfides, iron‐based sulfides have attracted wide attention due to their abundant resources, low cost, and non‐toxicity, showing considerable research value in the field of secondary batteries. Thereinto, Fe 3 S 4 has a high theoretical specific capacity of 785 mAh g −1 . However, at present, the research related to Fe 3 S 4 anode for sodium‐ion batteries (SIBs) is still in its infancy, and it also suffers from severe volume expansion and limited preparation. Therefore, to further boost its sodium storage potential, the Fe 3 S 4 @rGO composite with hierarchical structure and carbonaceous network is proposed in this study. Beneficial from the ingenious hierarchitectures and flexible graphene coating, the Fe 3 S 4 @rGO anode exhibits outstanding sodium storage performance, which can deliver a high capacity of 603 mAh g −1 after 1500 cycles with a superior capacity retention of 98%. The micron flower‐like structure composed of 2D nanosheets can provide sufficient active sites and promote the rapid transport of Na + . Meanwhile, the 3D interconnected graphene carbon network makes a crucial contribution to alleviating volume changes and enhancing electrical conductivity. This work reveals the application potential of Fe 3 S 4 as an anode electrode for SIBs and provides available insights for the development of other electrode materials.
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