Li Hang, Liu Hao, Luo Shunrui, Arbiol Jordi, Suard Emmanuelle, Bergfeldt Thomas, Missyul Alexander, Baran Volodymyr, Mangold Stefan, Zhang Yongchao, Hua Weibo, Knapp Michael, Ehrenberg Helmut, Pan Feng, Indris Sylvio
School of Advanced Materials, Peking University Shenzhen Graduate School, Shenzhen, China.
Institute for Applied Materials (IAM), Karlsruhe Institute of Technology (KIT), Eggenstein-Leopoldshafen, Germany.
Nat Commun. 2025 Mar 5;16(1):2203. doi: 10.1038/s41467-025-57063-7.
Structure evolution and surface reactivity have long been regarded as the most crucial points for studying Ni-rich positive electrodes for Li-ion batteries. Unfortunately, the influence of Li occupancy as a single factor on electro-chemomechanical stability has been overlooked and is missing, owing to the challenge of Li determination in the lattice. Here, a comprehensive analysis reveals different Li occupancies and related structural domains (Ni/Li exchange, LiXO, Li/Mn/X(Ni) ordering domains, X = Nb, W, and Mo) by using a combination of Li-sensitive characterization techniques. By introducing a Li-regulation strategy, the relative ratio of each domain is effectively tuned in the Ni-rich positive electrodes. Through tuning, two specific positive electrodes are designed, exhibiting notable improvement in battery cyclability. The specific Li structural units induce significant changes in redox mechanisms. This Li-occupancy-tuning approach highlights the necessity of focusing on Li distribution and opens up ideas for designing advanced Ni-rich positive electrodes with high durability.
长期以来,结构演变和表面反应性一直被视为研究锂离子电池富镍正极的最关键要点。不幸的是,由于晶格中锂测定的挑战,锂占据作为单一因素对电化学机械稳定性的影响一直被忽视且未被研究。在此,通过结合锂敏感表征技术进行的综合分析揭示了不同的锂占据情况以及相关的结构域(镍/锂交换、LiXO、Li/Mn/X(镍)有序域,X = 铌、钨和钼)。通过引入锂调控策略,富镍正极中各结构域的相对比例得到了有效调节。通过调节,设计了两种特定的正极,其电池循环性能有显著改善。特定的锂结构单元引起了氧化还原机制的显著变化。这种锂占据调节方法突出了关注锂分布的必要性,并为设计具有高耐久性的先进富镍正极开辟了思路。