首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >An Li-rich oxide cathode material with mosaic spinel grain and a surface coating for high performance Li-ion batteries
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An Li-rich oxide cathode material with mosaic spinel grain and a surface coating for high performance Li-ion batteries

机译:具有镶嵌尖晶石晶粒和表面涂层的富锂氧化物正极材料,用于高性能锂离子电池

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摘要

Lithium-rich layered oxides are considered to be one of the most promising cathode materials for lithium ion batteries due to their extremely high reversible capacity. Here, we report the design of a novel heterostructured Li_(1.2)Ni_(0.13)Co_(0.13)Mn_(0.54)O2 material with mosaic spinel nanograins and a surface coating, which is synthesized by a facile and green one-step solid-phase surface-modification process. We propose that the chemical Li leaching from Li2MnO3 simultaneously induces the formation of a fluorite coating and the layer-to-spinel phase transformation at high temperatures. The fluorite coating protects the lithium-rich oxides from direct exposure to the highly active electrolyte. The spinel phase provides an efficient path for Li~+ mobility and also facilitates the suppression of the initial irreversible capacity loss. This unique heterostructured Li_(1.2)Ni_(0.13)Co_(0.13)Mn_(0.54)O2 material thus exhibits an outstanding initial Coulombic efficiency, superior rate capability and excellent cyclability. The design concept and facile synthetic strategy can be applied to both advanced lithium ion batteries and other high-performance energy storage devices.
机译:富锂层状氧化物由于其极高的可逆容量而被认为是锂离子电池最有希望的正极材料之一。在这里,我们报告了一种新颖的异质结构Li_(1.2)Ni_(0.13)Co_(0.13)Mn_(0.54)O2材料的设计,该材料具有马赛克尖晶石纳米颗粒和表面涂层,该材料是通过简便且绿色的一步固相法合成的相表面改性过程。我们提出,从Li2MnO3中浸出的化学锂会同时诱导萤石涂层的形成和高温下层到尖晶石相的转变。萤石涂层可保护富锂氧化物免于直接暴露于高活性电解质中。尖晶石相为Li +的迁移提供了一条有效的途径,也有助于抑制最初不可逆的容量损失。因此,这种独特的异质结构Li_(1.2)Ni_(0.13)Co_(0.13)Mn_(0.54)O2材料具有出色的初始库仑效率,优异的速率能力和出色的循环性。设计概念和简便的合成策略可以应用于高级锂离子电池和其他高性能储能设备。

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