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Effective regeneration of LiCoO2 from spent lithium-ion batteries: a direct approach towards high-performance active particles

机译:从锂离子电池中有效再生LiCoO2:直接探讨高性能活性颗粒

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摘要

With the growing applications of lithium-ion batteries (LIBs) in many areas, their recycling becomes a necessary task. Although great effort has been made in LIB recycling, there remains an urgent need for green and energy-efficient approaches. Here we report a non-destructive approach to regenerate cathode materials by hydrothermal treatment of cycled electrode particles followed by short annealing. Unlike the conventional chemical leaching or solid-state synthesis approach, which either requires complicated steps of leaching, precipitation and waste treatment or relies on the chemical analysis of the Li/Co ratio from cell to cell, our non-destructive approach is much simpler and more environmentally friendly, and can easily process batteries with different capacity degradation conditions. In addition, the regenerated LiCoO2 particles can retain their original morphology and structure, and provide high specific capacity and cycling stability. Importantly, they show much better rate capability than particles regenerated through the solid-state synthesis approach. Our work demonstrates a greener, simpler and more energy-efficient strategy to recycle and regenerate faded LiCoO2 cathode materials with high electrochemical performance. This approach can be widely used to recycle and regenerate LiCoO2 cathodes on a large scale, and can be potentially applied to other types of cathode materials in LIBs and mixed cathode chemistry.
机译:随着锂离子电池(LIBS)在许多领域的越来越多的应用中,它们的回收成为必要的任务。虽然在LIB回收中取得了巨大努力,但仍然需要迫切需要绿色和节能的方法。在这里,我们通过循环电极颗粒的水热处理然后短退火来报告一种未破坏的方法来再生阴极材料。与传统的化学浸出或固态合成方法不同,需要复杂的浸出,沉淀和废物处理或依赖于与细胞的Li / Co比的化学分析,但我们的无损方法更简单更环保,可以轻松地处理具有不同容量降级条件的电池。此外,再生的LiCoO2颗粒可以保留其原始形态和结构,并提供高特定的容量和循环稳定性。重要的是,它们比通过固态合成方法再生的颗粒显示出更好的速率能力。我们的作品展示了更环保,更简单,更节能的策略,可以通过高电化学性能再循环和再生褪色的LiCoO2阴极材料。这种方法可以广泛用于在大规模上再循环和再生LiCoO2阴极,并且可以潜在地应用于Libs和混合阴极化学中的其他类型的阴极材料。

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