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In Situ Growth of Lithiophilic MOF Layer Enabling Dendrite-free Lithium Deposition

机译:原位生长锂硫酸MOF层使枝晶锂沉积能够

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摘要

Lithium metal batteries have recently emerged as alternative energy storage systems beyond lithium-ion batteries. However, before this kind of batteries can become a viable technology, the critical issues of the Li anodes, like dendrites growth and low Coulombic efficiency (CE), need to be conquered. Herein, lithiophilic Cu-metal-organic framework thin layer (Cu-MOF TL) is in situ grown on the surface of Cu foil by a facile immersion strategy to construct a multifunctional current collector. Profiting from the high electrical conductivity and unique porous structure, the Cu-MOF TL with high affinity to electrolyte can provide uniform nucleation sites and promote homogeneous Li+ flux, as a result, radically restrain the Li dendrite growth, leading to stable Li plating/striping behaviors. The modified current collector enables Li plating/stripping with a prominent CE (∼97.1%) and a stable lifetime (∼2500 h). Importantly, the synthesis method can be easily large-scale production in a series of organic solvents.
机译:锂金属电池最近被出现为超越锂离子电池的替代储能系统。然而,在这种电池可以成为一种可行的技术之前,需要征服李阳极,如树枝状生长和低库仑效率(CE)。这里,通过容易浸没策略,锂化学Cu-金属 - 有机框架薄层(Cu-Mof T1)原位在Cu箔表面上生长,以构建多功能集电器。利用高电导率和独特的多孔结构,具有高亲和力的Cu-Mof T1可以提供均匀的成核位点并促进均匀的Li +通量,因此局部抑制Li Dendrite生长,导致稳定的Li电镀/条带行为。改进的集电器使锂电镀/剥离具有突出的CE(〜97.1%)和稳定的寿命(〜2500小时)。重要的是,合成方法可以在一系列有机溶剂中容易地大规模生产。

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