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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Transition Metal Ordering Optimization for High-Reversible Capacity Positive Electrode Materials in the Li-Ni-Co-Mn Pseudoquaternary System
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Transition Metal Ordering Optimization for High-Reversible Capacity Positive Electrode Materials in the Li-Ni-Co-Mn Pseudoquaternary System

机译:Li-Ni-Co-Mn拟四元体系中高可逆容量正极材料的过渡金属有序优化

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摘要

The phase diagram of the Li-Ni-Co-Mn layered oxide pseudoquaternary system is used as starting point to elucidate the influence of transition metal (TM) ordering on the structures and electrochemistry of positive electrode materials with LiNi1-y-xCoyMnxO2 composition. Whereas our obtained phase diagram shows a comprehensive search of the most suitable target compositions for single-phase layered materials with large structural stability and reversible capacity, a detailed analysis of the transition metal ordering tries to fill the gap existing in the literature between transition metal composition and ordering, showing the effect on the electrochemical performance. Our results demonstrate that, in order to achieve high reversible capacities, control of the TM arrangement at the atomic scale seems to be crucial to enhance both ionic and electronic mobilities, thus maximizing the rate capability and structural stability during cycling.
机译:以Li-Ni-Co-Mn层状氧化物伪四元体系的相图为起点,阐明过渡金属(TM)有序对具有LiNi1-y-xCoyMnxO2组成的正极材料的结构和电化学的影响。尽管我们获得的相图显示了对具有大结构稳定性和可逆容量的单相层状材料最合适的目标组成的全面搜索,但对过渡金属有序化的详细分析试图填补文献中过渡金属组成之间的空白和排序,显示对电化学性能的影响。我们的结果表明,为了实现高可逆容量,在原子尺度上控制TM排列对于增强离子和电子迁移率似乎至关重要,从而最大程度地提高了循环过程中的速率能力和结构稳定性。

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