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首页> 外文期刊>Chinese Journal of Chemistry >Synthesis and Electrochemical Characterization of Gradient Composite LiNi_(1-y)CO_yO_2 Used as Cathode Materials in Lithium-ion Battery
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Synthesis and Electrochemical Characterization of Gradient Composite LiNi_(1-y)CO_yO_2 Used as Cathode Materials in Lithium-ion Battery

机译:梯度复合锂离子电池正极材料LiNi_(1-y)CO_yO_2的合成及电化学表征

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摘要

Gradient composites, LiNi_(1-y)Co_yO_2, are synthesized from coated spherical Ni(OH)_2 precursor. These composites could be applied as new cathode materials in lithium-ion batteries because they have low cobalt content (y ≤ 0.2) and exhibit excellent properties during high-rate charge/discharge cycles. The initial discharge capacity of coated composite of LiNi_(0.95)Co_(0.05)O_2 is 186 mAh/g, and the decreasing rate of the capacity is 3.2% in 50 cycles at 1 C rate. It has been verified by TEM and EDX experiments that a core-shell structure of the composite particles develops because of the cobalt enrichment near the surfaces, and the formation of the cobalt enrichment layer is sensitive to sintering temperature. High cobalt surface concentration may reduce the undesired reactions and stabilize the structure of the particles.
机译:从包覆的球形Ni(OH)_2前驱体合成了梯度复合材料LiNi_(1-y)Co_yO_2。这些复合材料可以用作锂离子电池的新型阴极材料,因为它们的钴含量低(y≤0.2)并且在高倍率的充电/放电循环中表现出出色的性能。 LiNi_(0.95)Co_(0.05)O_2涂层复合材料的初始放电容量为186 mAh / g,在1 C速率下的50个循环中,容量的降低率为3.2%。通过TEM和EDX实验已证实,由于表面附近的钴富集,形成了复合颗粒的核-壳结构,并且钴富集层的形成对烧结温度敏感。高钴表面浓度可减少不希望的反应并稳定颗粒的结构。

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