Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Upcycling of Degraded LiCoO 2 Cathodes into High‐Performance Lithium‐Ion Batteries via a Three‐In‐One Strategy

作者:Zhenzhen Liu, Huaimeng Li, Miaomiao Han, Liang Fang, Zhen Fu, Haimin Zhang, Guozhong Wang, Yunxia Zhang · 发表于:Advanced Energy Materials · 年份:2023 · DOI:10.1002/aenm.202302058 · 被引用次数:58 · 研究领域:Advancements in Battery Materials、Extraction and Separation Processes、Advanced Battery Materials and Technologies

Abstract Faced with the forthcoming tide of retired lithium‐ion batteries (LIBs), it is imperative to explore effective regeneration and upcycling strategies to alleviate the resource shortage, address environmental pollution, and cater to the demand for high‐energy‐density cathode materials. Herein, a facile, non‐constructive, one‐stone‐for‐three‐birds solid‐phase sintering strategy is proposed to regenerate the degraded LiCoO 2 (D‐LCO) cathode and even upgrade its stability at high voltages, in which three birds, i.e., lithium supplement, Li 2 SO 4 coating, and Mn doping into Co sites while N, S doping into Li‐O slabs are simultaneously hit with one stone (one‐pot solid‐phase sintering). Benefiting from these favorable characteristics, the upcycled cathode not only yields high discharge‐specific capacity of 188.2 mAh g −1 at 0.2 C, but also delivers superior cycling performance with 92.5% of capacity retention after 100 cycles (86.4% after 300 cycles) at 0.5 C and excellent rate capability at a high cutoff voltage of 4.5 V, superior to a freshly commercial counterpart. This work is expected to provide meaningful guidance for the upcycling of D‐LCO into high‐energy‐density batteries with long‐term cycling stability.