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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Nanoscale surface modification of Li-rich layered oxides for high-capacity cathodes in Li-ion batteries
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Nanoscale surface modification of Li-rich layered oxides for high-capacity cathodes in Li-ion batteries

机译:锂离子电池中高容量阴极含有锂富含层氧化物的纳米级表面改性

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摘要

Li-rich layered oxides (LLOs) have been developed as a high-capacity cathode material for Li-ion batteries, but the structural complexity and unique initial charging behavior lead to several problems including large initial capacity loss, capacity and voltage fading, poor cyclability, and inferior rate capability. Since the surface conditions are critical to electrochemical performance and the drawbacks, nanoscale surface modification for improving LLO's properties is a general strategy. This review mainly summarizes the surface modification of LLOs and classifies them into three types of surface pre-treatment, surface gradient doping, and surface coating. Surface pre-treatment usually introduces removal of Li2O for lower irreversible capacity while surface doping is aimed to stabilize the structure during electrochemical cycling. Surface coating layers with different properties, protective layers to suppress the interface side reaction, coating layers related to structural transformation, and electronic/ionic conductive layers for better rate capability, can avoid the shortcomings of LLOs. In addition to surface modification for performance enhancement, other strategies can also be investigated to achieve high-performance LLO-based cathode materials.
机译:富含量的分层氧化物(LLOS)被开发为锂离子电池的高容量阴极材料,但结构复杂性和独特的初始充电行为导致几个问题,包括较大的初始容量损耗,容量和电压衰落,可行性差,和较差的速率能力。由于表面条件对电化学性能和缺点至关重要,因此用于改善LLO的性质的纳米级表面改性是一般策略。本综述主要总结了LLO的表面改性,并将它们分为三种类型的表面预处理,表面梯度掺杂和表面涂层。表面预处理通常引入Li2O的除去较低的不可逆容量,而表面掺杂旨在在电化学循环期间稳定结构。具有不同性质的表面涂层,保护层抑制界面侧反应,涂层与结构变换相关,电子/离子导电层具有更好的速率,可以避免LLO的缺点。除了用于性能增强的表面改性外,还可以研究其他策略,以实现高性能的基于LLO的阴极材料。

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