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Elucidation of key factors of water-resistance of Li-rich solid-solution layered oxide cathode materials applicable to a water-based cathode preparation process for Li-ion battery

机译:阐明锂耐固溶性层状氧化物阴极材料耐水性的关键因素,适用于锂离子电池的水基阴极制备方法

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In order to show the best composition which gives water-resistance to Li-rich solid-solution layered oxide cathode materials for a water-based cathode preparation process, the water resistance of LLOs composed of xLi(2)MnO(3)-yLiNi(1/2)Mn(1/2)O(2)-(1-x-y)LiNi1/3Co1/3Mn1/3O2 was examined by comparing the charge/discharge cycle results obtained with the cathodes prepared with organic solvent-based and water-based binders. The composition area where the percentage content of Li2MnO3 is 70-75% was found to show both high charge/discharge capability and water resistance. In addition, by analyzing why this composition of Li2MnO3 exhibits high water resistance, it has become apparent that the oxidation states of Mn ions and existence of Co ions on the surface of LLOs are the key factors in inhibiting the dissolution of Mn and Ni ions from the LLO surfaces, and finally leading to their high water resistance. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了显示最佳的组合物,该组合物给予富含锂的固溶性层状氧化物阴极材料,用于水基阴极制备过程,LLO的耐水性由XLI(2)MNO(3) - ylini( 通过比较用基于有机溶剂和水的阴极获得的电荷/放电循环结果来检查1/2)Mn(1-XY)LINI1 / 3CO1 / 3MN1 / 3O2 基于粘合剂。 发现Li2MNO3的百分比含量为70-75%的组合物区域,以显示高电荷/放电能力和耐水性。 另外,通过分析为什么这种Li2MNO3的这种组合物具有高耐水性,显然是Mn离子的氧化状态和LLO表面表面的CO离子存在是抑制Mn和Ni离子溶解的关键因素 LLO表面,最终导致其高耐水性。 (c)2018年elestvier有限公司保留所有权利。

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