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The Configurational Space of Rocksalt-Type Oxides for High-Capacity Lithium Battery Electrodes

机译:高容量锂电池电极用岩盐型氧化物的结构空间

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A unifying theory is presented to explain the lithium exchange capacity of rocksalt-like structures with any degree of cation ordering, and how lithium percolation properties can be used as a guideline for the development of novel high-capacity electrode materials is demonstrated. The lithium percolation properties of the three most common lithium metal oxide phases, the layered -NaFeO2 structure, the spinel-like LT-LiCoO2 structure, and the -LiFeO2 structure, are demonstrated and a strong dependence of the percolation thresholds on the cation ordering and the lithium content is observed. The poor performance of -LiFeO2-type structures is explained by their lack of percolation of good Li migration channels. The spinel-like structure exhibits excellent percolation properties that are robust with respect to off-stoichiometry and some amount of cation disorder. The layered structure is unique, as it possesses two different types of lithium diffusion channels, one of which is, however, strongly dependent on the lattice parameters, and therefore very sensitive to disorder. In general it is found that a critical Li-excess concentration exists at which Li percolation occurs, although the amount of Li excess needed depends on the partial cation ordering. In fully cation-disordered materials, macroscopic lithium diffusion is enabled by ≈10% excess lithium.
机译:提出了一个统一的理论来解释具有任意阳离子有序度的岩盐样结构的锂交换容量,并论证了如何将锂的渗透特性用作开发新型高容量电极材料的指南。证明了三种最常见的锂金属氧化物相的层层渗透特性,即层状-NaFeO2结构,尖晶石状LT-LiCoO2结构和-LiFeO2结构,并且渗透阈值对阳离子有序化和观察到锂含量。 -LiFeO2型结构的性能差是由于它们缺乏良好的Li迁移通道的渗滤所致。尖晶石样结构表现出优异的渗滤性能,相对于化学计量失衡和某些阳离子紊乱而言,鲁棒性强。层状结构是独特的,因为它具有两种不同类型的锂扩散通道,但是其中之一强烈依赖于晶格参数,因此对无序非常敏感。通常发现,存在临界的锂过量浓度,在该临界浓度下会发生锂渗透,尽管所需的过量锂量取决于阳离子的部分排序。在完全无序的材料中,约10%的过量锂可实现宏观锂扩散。

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