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从废旧锂离子电池中再生的镍掺杂LiCoO作为4.5V下的稳定阴极。

Regenerated Ni-Doped LiCoO from Spent Lithium-Ion Batteries as a Stable Cathode at 4.5 V.

作者信息

Zheng Zeqiang, Xie Dong, Liu Xiaochen, Huang Han, Zhang Min, Cheng Faliang

机构信息

Guangdong Engineering and Technology Research Center for Advanced Nanomaterials, School of Environment and Civil Engineering, Dongguan University of Technology, Dongguan, Guangdong 523808, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2024 Jun 19;16(24):31137-31144. doi: 10.1021/acsami.4c03831. Epub 2024 Jun 10.

Abstract

In the context of the increasing number of spent lithium-ion batteries, it is urgent to explore cathode regeneration and upcycling solutions to reduce environmental pollution, promote resource reuse, and meet the demand for high-energy cathode materials. Here, a closed-loop recycling method is introduced, which not only reclaims cobalt and lithium elements from spent lithium-ion batteries but also converts them into high-voltage LiCoO (LCO) materials. This approach involved pretreatment, chlorination roasting, water leaching, and ion doping to regenerate nickel-doped LCO (Ni-RLCO) materials. The doping of nickel effectively enhances the electrochemical stability of the LCO cathode at 4.5 V. The Ni-RLCO cathode exhibited a high discharge specific capacity of 185.28 mAh/g at a rate of 0.5 C with a capacity retention of 86.3% after 50 cycles and excellent rate capacity of 156.21 mAh/g at 2 C. This work offers a approach in significance for upcycling spent LCO into high-energy-density batteries with long-term cycling stability under high voltage.

摘要

在废旧锂离子电池数量不断增加的背景下,迫切需要探索阴极再生和升级循环解决方案,以减少环境污染、促进资源再利用,并满足对高能量阴极材料的需求。在此,介绍一种闭环回收方法,该方法不仅能从废旧锂离子电池中回收钴和锂元素,还能将它们转化为高压LiCoO(LCO)材料。这种方法包括预处理、氯化焙烧、水浸出和离子掺杂,以再生镍掺杂的LCO(Ni-RLCO)材料。镍的掺杂有效地提高了LCO阴极在4.5V时的电化学稳定性。Ni-RLCO阴极在0.5C的电流倍率下表现出185.28 mAh/g的高放电比容量,50次循环后容量保持率为86.3%,在2C的电流倍率下具有156.21 mAh/g的优异倍率性能。这项工作为将废旧LCO升级循环为具有高电压下长期循环稳定性的高能量密度电池提供了一种具有重要意义的方法。

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