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Enhanced high-temperature performance of Li-rich layered oxide via surface heterophase coating 被引量:7

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摘要 Li-rich layered oxides have become one of the most concerned cathode materials for high-energy lithiumion batteries, but they still suffer from poor cycling stability and detrimental voltage decay, especially at elevated temperature. Herein, we proposed a surface heterophase coating engineering based on amorphous/crystalline Li3 PO4 to address these issues for Li-rich layered oxides via a facile wet chemical method. The heterophase coating layer combines the advantages of physical barrier effect achieved by amorphous Li3 PO4 with facilitated Li+diffusion stemmed from crystalline Li3 PO4. Consequently, the modified Li(1.2) Ni(0.2) Mn(0.6) O2 delivers higher initial coulombic efficiency of 92% with enhanced cycling stability at 55 °C(192.9 mAh/g after 100 cycles at 1 C). More importantly, the intrinsic voltage decay has been inhibited as well, i.e. the average potential drop per cycle decreases from 5.96 mV to 2.99 mV. This surface heterophase coating engineering provides an effective strategy to enhance the high-temperature electrochemical performances of Li-rich layered oxides and guides the direction of surface modification strategies for cathode materials in the future.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第12期39-47,共9页 能源化学(英文版)
基金 supported by the National Key R&D Program of China (2016YFB0100301) the National Natural Science Foundation of China (51802020, 51802019) the Beijing Institute of Technology Research Fund Program for Young Scholars the Young Elite Scientists Sponsorship Program by CAST (2018QNRC001。
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