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Interfacially Redistributed charge for robust lithium metal anode

材料科学 阳极 电极 阴极 极化(电化学) 电流密度 化学工程 电化学 化学物理 金属 冶金 物理化学 化学 物理 量子力学 工程类
作者
Zheng Luo,Shuo Li,Li Yang,Ye Tian,Laiqiang Xu,Guoqiang Zou,Hongshuai Hou,Weifeng Wei,Libao Chen,Xiaobo Ji
出处
期刊:Nano Energy [Elsevier BV]
卷期号:87: 106212-106212 被引量:73
标识
DOI:10.1016/j.nanoen.2021.106212
摘要

Li metal is the ultimate anode material for Li based battery with high energy density. However, inhomogeneous charge distribution from the unbalanced ion/electron transport is usually generated at the electrode surface, leading to the uncontrollable dendrites with poor reversibility. Herein, interconnected Li3P@Cu ion/electron conductive interlayer activated from interfacial reaction between Cu3P arrays and metallic Li is efficiently constructed on Li foil surface through room-temperature mechanical rolling process for charge redistribution. Demonstrated by theoretic calculation, the diffusion barrier of Li+ is remarkably reduced from Li3P interphase with high ionic conductivity, while the electron-conductive Cu domains ensures well-dispersed current density, facilitating the uniform distribution of interfacial Li+ flux. Furthermore, the interconnected skeletons with extensive active channels significantly enhances the electrochemical kinetics and promotes the reversibility of Li plating/stripping processes. As expected, a prolonged lifespan of symmetrical cells over 1500 h with lower polarization is successfully achieved at 1 mA cm−2, further improving the rates and cycling performances of LiFePO4 based full cells in mass loading of 8.5 mg cm−2 with a capacity retention up to 91.7% after 300 cycles. This work proposed a rational interlayer design for interfacial charge redistribution and presents an efficient strategy to realize dendrite-free Li metal anode.
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