占用率
电极
材料科学
纳米技术
化学
生物
生态学
物理化学
作者
Hang Li,Hao Liu,Shunrui Luo,Jordi Arbiol,Emmanuelle Suard,Thomas Bergfeldt,Alexander Missyul,Volodymyr Baran,Stefan Mangold,Yongchao Zhang,Weibo Hua,Michael Knapp,Helmut Ehrenberg,Feng Pan,Sylvio Indris
标识
DOI:10.1038/s41467-025-57063-7
摘要
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, LiaXOb, Li/Mn/X(Ni) ordering domains, X = Nb5+, W6+, and Mo6+) 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.
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