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Effect of cycling conditions on the electrochemical performance of high capacity Li and Mn-rich cathodes for Li -ion batteries

机译:循环条件对锂离子电池高容量富锰锰阴极的电化学性能的影响

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Li and Mn-rich layered oxide cathodes although exhibit high specific capacities >= 240 mAh g(-1), suffer from capacity fading and discharge voltage decay during prolonged cycling to potential higher than 4.5 V. This study aimed at exploring an interesting Co-free Li and Mn rich cathode material and to understand how the upper potential applied affects its capacity and average discharge voltage upon prolonged cycling. Li1.17Ni0.25Mn0.58O2 cathodes were explored in Li cells by galvanostatic charge-discharge cycling in several potential ranges. The specific capacity, capacity retention and average discharge voltage were compared with and without activation to 4.6-4.8 V when cycled to different upper potential limits. This cathode material exhibited a high discharge capacity of 242 mAh g-(1) when cycled in the potential range of 2.3-4.6 V after activation to 4.8 V with gradual capacity fading and average discharge voltage decreasing from 3.62 V to 3.55 V during 100 cycles. When cycled in the potential range of 2.3-4.3 V after activation to 4.6 V, it exhibited a relatively stable capacity >160 mAh g(-1) and stable average discharge voltage of 3.61 V, during 100 cycles. Thus, with optimized operating condition, the Li and Mn-rich cathode material Li1.17Ni0.25Mn0.58O2 is promising for lithium-ion batteries. (C) 2016 Elsevier B.V. All rights reserved.
机译:富含Li和Mn的层状氧化物阴极虽然显示出高的比容量> = 240 mAh g(-1),但在长时间循环至高于4.5 V的电势期间会遭受容量衰减和放电电压衰减的影响。本研究旨在探索有趣的Co-释放富含锂和锰的正极材料,并了解在长时间循环后施加的高电位如何影响其容量和平均放电电压。通过在几个电势范围内的恒电流充放电循环,在Li电池中探索了Li1.17Ni0.25Mn0.58O2阴极。当循环至不同的电位上限时,将比容量,容量保持率和平均放电电压与激活和不激活至4.6-4.8 V进行比较。活化至4.8 V后,在2.3-4.6 V的电位范围内循环时,该正极材料显示出242 mAh g-(1)的高放电容量,逐渐降低容量,并且在100次循环中平均放电电压从3.62 V降至3.55 V 。在激活到4.6 V后在2.3-4.3 V的电位范围内循环时,在100个循环中,它显示出相对稳定的容量> 160 mAh g(-1)和3.61 V的稳定平均放电电压。因此,在优化的工作条件下,富含锂和锰的正极材料Li1.17Ni0.25Mn0.58O2有望用于锂离子电池。 (C)2016 Elsevier B.V.保留所有权利。

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