Huang Cheng, Xia Xue, Chi Ziwei, Yang Zeheng, Huang Haijian, Chen Zhangxian, Tang Weijian, Wu Guoqing, Chen Huayong, Zhang Weixin
School of Chemistry and Chemical Engineering, Hefei University of Technology, Hefei, Anhui, 230009, PR China.
Anhui Industrial Innovation Center of lithium Battery Green Recycling, Jieshou, Fuyang, Anhui, 236500, PR China.
Nanoscale. 2022 Jul 14;14(27):9724-9735. doi: 10.1039/d2nr00993e.
With the rapid consumption of lithium-ion batteries (LIBs), the recycling of spent LIBs is becoming imperative. However, the development of effective and environmentally friendly methods towards the recycling of spent LIBs, especially waste electrode materials, still remains a great challenge. Herein, on the basis of a Li-based molten salt, we have developed a facile and effective strategy to recycle spent polycrystalline ternary cathode materials into single-crystal cathodes. The regenerated plate-like single-crystal LiNiCoMnO material with exposed {010} planes achieves an excellent rate performance and outstanding cycling stability. In particular, a high capacity of 155.1 mA h g and a superior capacity retention of 94.3% can be achieved by the recycled cathode material even after 240 cycles at 1 C. Meanwhile the single-crystal structure can be well reserved without any cracks or pulverization being observed. Moreover, this recycling method can be expanded to recycle other waste Ni-Co-Mn ternary cathode materials (NCM) or their mixtures for producing high-performance single-crystal cathode materials, demonstrating its versatility and flexibility in practical applications. Therefore, the strategy of converting spent NCM cathodes into single-crystal ones with satisfactory electrochemical performance may open up a cost-effective pathway for resolving the issues caused by the large amounts of spent LIBs, thus facilitating the sustainable development of LIBs.
随着锂离子电池(LIBs)的快速消耗,废旧LIBs的回收变得势在必行。然而,开发有效且环保的废旧LIBs回收方法,尤其是废旧电极材料的回收方法,仍然是一个巨大的挑战。在此,基于锂基熔盐,我们开发了一种简便有效的策略,将废旧多晶三元正极材料回收为单晶正极。具有暴露{010}面的再生板状单晶LiNiCoMnO材料具有优异的倍率性能和出色的循环稳定性。特别是,即使在1 C下循环240次后,回收的正极材料仍可实现155.1 mA h g的高容量和94.3%的优异容量保持率。同时,单晶结构可以很好地保留,未观察到任何裂纹或粉化现象。此外,这种回收方法可以扩展到回收其他废旧镍钴锰三元正极材料(NCM)或它们的混合物,以生产高性能单晶正极材料,证明了其在实际应用中的通用性和灵活性。因此,将废旧NCM正极转化为具有令人满意的电化学性能的单晶正极的策略,可能为解决大量废旧LIBs所带来的问题开辟一条具有成本效益的途径,从而促进LIBs的可持续发展。