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高能量密度鋰離子電池層狀錳基正極材料研究進展

Comparison on the solid-state desilication kinetics of silicon manganese powder by microwave heating and conventional heating

  • 摘要: 層狀錳基材料LiLix(MnM)1-xO2(M=Ni,Co,Cr,…)以高比容量成為最具應用前景的正極體系之一,近年來成為研究熱點而倍受關注,尤其借助原位測試分析等先進表征手段,對LiLix(MnM)1-xO2的結構及其高容量獲取機理的研究取得顯著進展.本文概括介紹了高能量密度層狀正極材料的結構與充放電機理,重點針對其目前依然存在的問題,詳細歸納了LiLix(MnM)1-xO2正極材料充放電循環過程中電壓衰減機理、界面/表面特征以及性能改善的研究新進展,而且對高能量密度層狀正極材料的未來研究方向也進行了探討.

     

    Abstract: Layered Mn-based series LiLix(MnM)1-xO2 (M=Ni, Co, Cr, …) due to its much higher capacity is one of the very promising candidates of cathodes, which has become a research hotspot recently and attracted more and more attention. Especially, with the aid of advanced characterization techniques including in-situ analysis, studies on the complex structure and high-capacity delivering mechanism of the series have achieved significant progress. In the paper, the structural characterization and charge-discharge behavior of the high-energy density layered cathode were briefly introduced. Study progresses on the voltage degradation, interface/surface variation during cycling and performance improvements of LiLix(MnM)1-xO2 were reviewed in detail particularly in view of its exiting issues. Furthermore, the challenges and prospects in the high-energy density layered cathode materials were also discussed herein.

     

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