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A Lithium‐Ion Pump Based on Piezoelectric Effect for Improved Rechargeability of Lithium Metal Anode

机译:基于压电效应的锂离子泵可改善锂金属阳极的充电性

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摘要

Lithium metal is widely studied as the “crown jewel” of potential anode materials due to its high specific capacity and low redox potential. Unfortunately, the Li dendrite growth limits its commercialization. Previous research has revealed that the uniform Li‐ion flux on electrode surface plays a vital role in achieving homogeneous Li deposition. In this work, a new strategy is developed by introducing a multifunctional Li‐ion pump to improve the homogenous distribution of Li ions. Via coating a β‐phase of poly(vinylidene fluoride) (β‐PF) film on Cu foil (Cu@β‐PF), a piezoelectric potential across such film is established near the electrode surface because of its piezoelectric property, which serves as a driving force to regulate the migration of Li ions across the film. As a result, uniform Li‐ion distribution is attained, and the Cu@β‐PF shows coulombic efficiency around 99% throughout 200 cycles. Meanwhile, the lithium‐sulfur full cell paired with Li‐Cu@β‐PF anode exhibits excellent performance. This facile strategy via regulating the Li‐ion migration provides a new perspective for safe and reliable Li metal anode.
机译:金属锂由于其高的比容量和低的氧化还原电势而被广泛研究为潜在阳极材料的“皇冠上的宝石”。不幸的是,锂枝晶的生长限制了其商业化。先前的研究表明,电极表面上均匀的锂离子通量在实现均匀的锂沉积中起着至关重要的作用。在这项工作中,通过引入多功能锂离子泵来开发新策略,以改善锂离子的均匀分布。通过在铜箔(Cu @β-PF)上涂覆聚偏二氟乙烯(β-PF)膜的β相,由于其压电特性,在电极表面附近建立了跨该膜的压电势,这可以作为调节锂离子在薄膜中迁移的驱动力。结果,锂离子分布均匀,在200个循环中Cu @β-PF的库仑效率约为99%。同时,锂硫全电池与Li-Cu @β-PF阳极配对显示出优异的性能。通过调节锂离子迁移的这种简便策略为安全可靠的锂金属阳极提供了新的视角。

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