Department of Chemistry for Materials, Faculty of Engineering, Mie University, Tsu 514-8507, Japan.
Department of Chemical Science and Engineering, Kobe University, 1-1 Rokkodai-cho, Nada-ku, Kobe 657-8501, Japan.
Nat Commun. 2017 Apr 25;8:15106. doi: 10.1038/ncomms15106.
Reversible dendrite-free low-areal-capacity lithium metal electrodes have recently been revived, because of their pivotal role in developing beyond lithium ion batteries. However, there have been no reports of reversible dendrite-free high-areal-capacity lithium metal electrodes. Here we report on a strategy to realize unprecedented stable cycling of lithium electrodeposition/stripping with a highly desirable areal-capacity (12 mAh cm) and exceptional Coulombic efficiency (>99.98%) at high current densities (>5 mA cm) and ambient temperature using a diluted solvate ionic liquid. The essence of this strategy, that can drastically improve lithium electrodeposition kinetics by cyclic voltammetry premodulation, lies in the tailoring of the top solid-electrolyte interphase layer in a diluted solvate ionic liquid to facilitate a two-dimensional growth mode. We anticipate that this discovery could pave the way for developing reversible dendrite-free metal anodes for sustainable battery chemistries.
最近,由于在开发锂离子电池以外的领域中具有关键作用,无枝晶、低面积容量的锂金属电极重新受到关注。然而,目前还没有关于无枝晶、高面积容量锂金属电极的报道。在这里,我们报告了一种策略,使用稀释的溶剂化离子液体,在高电流密度(>5 mA cm)和环境温度下,实现了前所未有的稳定的锂沉积/剥离循环,具有很高的理想面积容量(12 mAh cm)和出色的库仑效率(>99.98%)。该策略的本质是通过循环伏安法预调制来显著提高锂沉积动力学,其关键在于对稀释溶剂化离子液体中的顶部固体电解质中间相层进行剪裁,以促进二维生长模式。我们预计,这一发现将为开发可持续电池化学的无枝晶金属负极铺平道路。