Surface phase transformation and CaF2 coating for enhanced electrochemical performance of Li-rich Mn-based cathodes

被引:82
作者
Liu, Xiaoyu [1 ]
Huang, Tao [1 ]
Yu, Aishui [1 ]
机构
[1] Fudan Univ, Dept Chem, Collaborat Innovat Ctr Chem Energy Mat, Shanghai Key Lab Mol Catalysis & Innovat Mat,Inst, Shanghai 200438, Peoples R China
关键词
Lithium-ion battery; Li-rich cathode material; Surface modification; Phase transformation; LITHIUM; ELECTRODES; OXIDES;
D O I
10.1016/j.electacta.2015.02.155
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
To overcome the voltage decay upon cycling and increase the initial coulombic efficiency of the layered Li-rich Mn-based oxides, the double modification combining Na2S2O8 treatment with CaF2 coating has been first proposed in this study. The precondition Na2S2O8 treatment activates the Li2MnO3 phase gently and generates a stabilized three-dimensional spinel structure on the surface of particles, leading to a suppression of surface reaction and structure conversion during the subsequent electrochemical process. The mitigation of phase transformation for Na2S2O8-treated Li1.2Mn0.54Ni0.13Co0.13O2 alleviates the voltage decay and energy density degradation upon long-term charge-discharge cycling. In order to further restrain the capacity loss derived from the HF attack and manganese dissolution, 40 wt% Na2S2O8 treated-sample has been modified by an amorphous CaF2 layer with nano-scale thickness. The first-reported CaF2-coated/40 wt% Na2S2O8 treated-Li1.2Mn0.54Ni0.13Co0.13O2 presents excellent electrochemical properties with a high initial coulombic efficiency of 99.2%, a capacity retention rate of 89.2% after 200 cycles and a high-rate capability of 152.1 mAh g (1) at 3 C. The double surface modification offers a smart design concept for Li-rich Mn-based oxides to meet the practical requirements for advanced lithium ion batteries in electric vehicles. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:82 / 92
页数:11
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