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Recent Developments of the Lithium Metal Anode for Rechargeable Non-Aqueous Batteries

机译:用于可充电非含水电池的锂金属阳极的最新发展

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Over the last 40 years, metallic lithium as an anode material has been of great interest owing to its high energy density. However, dendritic lithium growth causes serious safety issues. Awareness and understanding of the Li deposition and stripping processes have grown rapidly especially in recent years, and consequently, there have been many attempts to suppress the Li dendrites. Recent developments that have modified the electrolytes and the Li anode in order to inhibit the growth of Li dendrite and improve cycling performance are summarized. It has been shown that current density, solid-electrolyte interphase (SEI) film, Li+ transference number, and shear modulus have significant impact on the growth behavior and the Coulombic efficiency. Various methods have been introduced to increase the surface area of the Li anode, enhance Li+ conductivity, form stable SEI film, and improve mechanical strength of electrolytes. These approaches are discussed in details, and the perspectives regarding the future use of Li anode are also outlined. It is hoped that this review will facilitate the future development of Li metal batteries.
机译:在过去的40年中,由于其高能量密度,金属锂作为阳极材料具有很大的兴趣。然而,树突锂生长导致严重的安全问题。对李沉积和剥离过程的认识和理解已经迅速增长,特别是近年来,因此,抑制了抑制李树枝状体的许多尝试。总结了改变电解质和锂阳极以抑制Li Dendrite的生长和改善循环性能的最新的发展。已经表明,电流密度,固体电解质间(SEI)膜,Li +转移数和剪切模量对生长行为和库仑效率具有显着影响。已经引入各种方法以增加Li阳极的表面积,增强Li +电导率,形成稳定的SEI膜,并改善电解质的机械强度。详细讨论了这些方法,还概述了关于未来使用LI阳极的观点。希望本综述将有助于李金电电池的未来发展。

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