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Binary iron sulfides as anode materials for rechargeable batteries: Crystal structures, syntheses, and electrochemical performance

机译:二元硫化铁作为可充电电池的负极材料:晶体结构,合成和电化学性能

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摘要

Effective utilization of energy requires the storage and conversion device with high ability. For well-developed lithium ion batteries (LIBs) and highly developing sodium ion batteries (SIBS), this ability especially denotes to high energy and power densities. It's believed that the capacity of a full cell is mainly contributed by anode materials. So, to develop inexpensive anode materials with high capacity are meaningful for various rechargeable batteries' better applications. Iron is a productive element in the crust, and its oxides, sulfides, fluorides, and oxygen acid salts are extensively investigated as electrode materials for batteries. In view of the importance of electrode materials containing iron, this review summarizes the recent achievements on various binary iron sulfides (FeS, FeS2, Fe3S4, and Fe7S8)-type electrodes for batteries. The contents are mainly focused on their crystal structures, synthetic methods, and electrochemical performance. Moreover, the challenges and some improvement strategies are also discussed.
机译:有效地利用能量需要具有高能力的存储和转换装置。对于发达的锂离子电池(LIB)和高度发展的钠离子电池(SIBS),此功能尤其表示高能量和功率密度。可以认为,整个电池的容量主要由阳极材料贡献。因此,开发廉价的高容量负极材料对于各种可充电电池的更好应用是有意义的。铁是地壳中的一种生产元素,其氧化物,硫化物,氟化物和含氧酸盐已被广泛研究用作电池的电极材料。考虑到含铁电极材料的重要性,本综述总结了在各种二元硫化铁(FeS,FeS2,Fe3S4和Fe7S8)型电池电极上的最新成就。内容主要集中在它们的晶体结构,合成方法和电化学性能上。此外,还讨论了挑战和一些改进策略。

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