利用先进的基于x射线的表征方法阐明锂离子电池无钴高镍层状氧化物阴极的降解机制

Hyejeong Hyun, Jongwoo Lim
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引用次数: 0

摘要

不含钴的高镍层状氧化物阴极正在被研究作为高能量密度锂离子电池的潜在正极材料。通过降低Co含量,这些阴极不仅提高了能量密度,而且减轻了对Co原料供应不稳定和成本波动的担忧。然而,层状氧化物中Ni含量的升高会导致不同的化学-机械降解机制,从而抑制其商业应用。为了深入了解从原子到颗粒和电极水平的各种尺度的降解过程,并设计防止降解的方法,多尺度表征方法是必不可少的。在这篇综述中,我们批判性地评估了Co取代在高镍层状氧化物中的作用以及Co含量对化学-机械降解过程的影响。此外,还讨论了先进的基于x射线的表征方法的使用,这些方法有助于阐明高镍阴极的降解机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elucidating degradation mechanisms of Co-free high-Ni layered oxide cathodes for Li-ion batteries via advanced X-ray-based characterization methods
High-Ni layered oxide cathodes without Co are being investigated as potential cathode materials for Li-ion batteries with high energy density. By decreasing the Co content, these cathodes not only boost energy density but also alleviate concerns about the supply instability and fluctuating cost of Co raw materials. However, the elevated Ni content in the layered oxides causes distinct chemo-mechanical degradation mechanisms that inhibit their commercial application. In order to gain insight into the degradation process at various scales, from the atomic to the particle and the electrode levels, and to devise ways to prevent degradation, multi-scale characterization methods are essential. In this review, we critically evaluate the role of Co substitution in high-Ni layered oxides and the impact of Co content on the chemo-mechanical degradation process. Furthermore, the use of advanced X-ray-based characterization methods, which have helped shed light on the degradation mechanisms of high-Ni cathodes, is also discussed.
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