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Revisiting Primary Particles in Layered Lithium Transition‐Metal Oxides and Their Impact on Structural Degradation

机译:层状锂过渡金属氧化物中的初级粒子及其对结构降解的影响

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摘要

Layered lithium transition‐metal oxide materials, e.g., Li(Ni1− x − yCoxMny)O2 (NCM) and Li(Ni1− x − yCoxAly)O2, are the most promising candidates for lithium‐ion battery cathodes. They generally consist of ≈10 µm spherical particles densely packed with smaller particles (0.1–1 µm), called secondary and primary particles, respectively. The micrometer‐ to nanometer‐sized particles are critical to the battery performance because they affect the reaction capability of the cathode. Herein, the crystal structure of the primary particles of NCM materials is revisited. Elaborate transmission electron microscopy investigations reveal that the so‐called primary particles, often considered as single crystals, are in fact polycrystalline secondary particles. They contain low‐angle and exceptionally stable special grain boundaries (GBs) presumably created during aggregation via an oriented attachment mechanism. Therefore, this so‐called primary particle is renamed as primary‐like particle. More importantly, the low‐angle GBs between the smaller true primary particles cause the development of nanocracks within the primary‐like particles of Ni‐rich NCM cathodes after repetitive electrochemical cycles. In addition to rectifying a prevalent misconception about primary particles, this study provides a previously unknown but important origin of structural degradation in Ni‐rich layered cathodes.
机译:层状锂过渡金属氧化物材料,例如Li(Ni1-x-yCoxMny)O2(NCM)和Li(Ni1-x- yCoxAly)O2是锂离子电池正极最有希望的候选材料。它们通常由≈10µm球形颗粒组成,这些球形颗粒密集地包裹着较小的颗粒(0.1–1 µm),分别称为次级颗粒和初级颗粒。微米至纳米大小的颗粒对于电池性能至关重要,因为它们会影响阴极的反应能力。在此,重新讨论了NCM材料的初级颗粒的晶体结构。详尽的透射电子显微镜研究表明,通常被视为单晶的所谓初级粒子实际上是多晶次级粒子。它们包含低角度且异常稳定的特殊晶粒边界(GB),大概是在聚集过程中通过定向附着机制创建的。因此,这个所谓的初级粒子被重命名为初级粒子。更重要的是,较小的真实初级粒子之间的低角度GBs会导致在重复电化学循环后富镍NCM阴极的初级粒子内出现纳米裂纹。除了纠正关于一次粒子的普遍误解外,这项研究还提供了一个以前未知但重要的富镍层状阴极结构退化的起因。

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