首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The structural mechanism of the improved electrochemical performances resulted from sintering atmosphere for LiNi_(0.5)Co_(0.2)Mn_(0.3)O_2 http://LiNio.5Coo.2Mno.3O2 cathode material
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The structural mechanism of the improved electrochemical performances resulted from sintering atmosphere for LiNi_(0.5)Co_(0.2)Mn_(0.3)O_2 http://LiNio.5Coo.2Mno.3O2 cathode material

机译:正极材料LiNi_(0.5)Co_(0.2)Mn_(0.3)O_2的烧结气氛导致电化学性能提高的结构机理

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摘要

The influence of preparing atmosphere on structure and the resultant electrochemical performances of LiNi_(0.5)Co_(0.2)Mn_(0.3)O_2 cathode material has been investigated in detail. The electrochemical performance measurements show that LiNi_(0.5)Co_(0.2)Mn_(0.3)O_2 cathode material can present significantly improved discharge capacities, good rate capability and excellent cycling stability simply by adjusting oxygen content in preparing atmosphere about 40 vol.%. Based on the results of rietveld refinements of the XRD data analyzed using Maud 2.14 software, the improved electrochemical performances could be ascribed to the well ordered layered structure and much lower degree of cation mixing in its structure. When the oxygen content increase to 40 vol.%, only 0.006 mol per formula unit of Ni are incorporated into the lithium layers (0.083 mol per formula unit for 10 vol.% oxygen content). Moreover, the highest ratio of I(003)//(104) (1.6025) in XRD pattern also approves the reduced cation mixing and well ordered layered structure of the composition. The revealed conclusions will help effectively create design strategies for large-scale synthesizing the cathode material for advanced lithium ion batteries.
机译:详细研究了制备气氛对正极材料LiNi_(0.5)Co_(0.2)Mn_(0.3)O_2 的结构及其电化学性能的影响。电化学性能测量表明,LiNi_(0.5)Co_(0.2)Mn_(0.3)O_2 正极材料可通过以下简单的方法即可显着提高放电容量,良好的倍率性能和出色的循环稳定性在准备气氛中调节氧气含量约40%(体积)。根据使用Maud 2.14软件分析的XRD数据的改进结果,可以将改进的电化学性能归因于层状结构良好,并且阳离子混合度较低。当氧含量增加至40vol。%时,仅0.006mol /化学式的Ni被掺入锂层中(0.083mol /化学式为10vol。%的氧)。此外,在XRD图谱中I(003)//(104)(1.6025)的最高比例也证实了组合物的减少的阳离子混合和有序的层状结构。揭示的结论将有助于有效地创建用于大规模合成高级锂离子电池正极材料的设计策略。

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