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An oxalate cathode for lithium ion batteries with combined cationic and polyanionic redox

机译:结合阳离子和聚阴离子氧化还原的锂离子电池草酸盐阴极

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摘要

The growing demand for advanced lithium-ion batteries calls for the continued development of high-performance positive electrode materials. Polyoxyanion compounds are receiving considerable interest as alternative cathodes to conventional oxides due to their advantages in cost, safety and environmental friendliness. However, polyanionic cathodes reported so far rely heavily upon transition-metal redox reactions for lithium transfer. Here we show a polyanionic insertion material, Li2Fe(C2O4)2, in which in addition to iron redox activity, the oxalate group itself also shows redox behavior enabling reversible charge/discharge and high capacity without gas evolution. The current study gives oxalate a role as a family of cathode materials and suggests a direction for the identification and design of electrode materials with polyanionic frameworks.
机译:对高级锂离子电池的需求不断增长,要求不断开发高性能正极材料。聚氧阴离子化合物由于在成本,安全性和环境友好性方面的优势而作为常规氧化物的替代阴极备受关注。然而,到目前为止,据报道,聚阴离子阴极严重依赖过渡金属氧化还原反应进行锂转移。在这里,我们显示了一种聚阴离子插入材料Li2Fe(C2O4)2,其中除铁的氧化还原活性外,草酸盐基团本身还显示出氧化还原行为,可实现可逆的充电/放电和高容量而无气体逸出。当前的研究使草酸盐作为阴极材料家族,并为鉴定和设计具有聚阴离子骨架的电极材料提供了方向。

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