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A Search for the Optimum Lithium Rich Layered Metal Oxide Cathode Material for Li-Ion Batteries

机译:寻找用于锂离子电池的最佳富锂分层金属氧化物正极材料

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摘要

We report the results of a comprehensive study of the relationship between electrochemical performance in Li cells and chemical composition of a series of Li rich layered metal oxides of the general formula xLi2MnO3 · (1-x)LiMn0.33Ni0.33Co0.33O2 in which x = 0,1, 0.2, 0,3, 0.5 or 0.7, synthesized using the same method. In order to identify the cathode material having the optimum Li cell performance we first varied the ratio between Li2MnO3 and LiMO2 segments of the composite oxides while maintaining the same metal ratio residing within their LiMO2 portions. The materials with the overall composition 0.5Li2MnO3 · 0.5LiMO2 containing 0.5 mole of Li2MnO3 per mole of the composite metal oxide were found to be the optimum in terms of electrochemical performance. The electrochemical properties of these materials were further tuned by changing the relative amounts of Mn, Ni and Co in the LiMO2 segment to produce xLi2MnO3 · (1-x)LiMn0.50Ni0.35Co0.15O2 with enhanced capacities and rate capabilities. The rate capability of the lithium rich compound in which x = 0.3 was further increased by preparing electrodes with about 2 weight-percent multiwall carbon nanotube in the electrode. Lithium cells prepared with such electrodes were cycled at the 4C rate with little fade in capacity for over one hundred cycles.
机译:我们报告了对锂电池中电化学性能与一系列通式为xLi2MnO3·(1-x)LiMn0.33Ni0.33Co0.33O2的富含Li的层状金属氧化物的化学组成之间的关系的全面研究的结果,其中= 0,1,0.2,0,3,0.5或0.7,使用相同方法合成。为了鉴定具有最佳Li电池性能的阴极材料,我们首先改变了复合氧化物的Li2MnO3和LiMO2链段之间的比例,同时在它们的LiMO2部分中保持相同的金属比例。对于电化学性能而言,发现总组成为0.5Li 2 MnO 3·0.5LiMO 2的材料相对于每摩尔复合金属氧化物包含0.5摩尔Li 2 MnO 3的材料是最佳的。通过改变LiMO2链段中Mn,Ni和Co的相对含量,可进一步调节这些材料的电化学性能,从而生成xLi 2 MnO 3 ·(1-x) LiMn 0.50 Ni 0.35 Co 0.15 O 2 具有增强的容量和速率能力。通过制备电极中具有约2重量%的多壁碳纳米管的电极,可以进一步提高其中x = 0.3的富锂化合物的速率能力。用这种电极制备的锂电池以4C的速率循环,容量下降很少,超过一百个循环。

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