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Self-Healing Wide and Thin Li Metal Anodes Prepared Using Calendared Li Metal Powder for Improving Cycle Life and Rate Capability

机译:使用日历Li金属粉末制备自愈的宽和薄Li金属阳极,用于改善循环寿命和速率能力

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摘要

The commercialization of Li metal electrodes is a long-standing objective in the battery community. To accomplish this goal, the formation of Li dendrites and mossy Li deposition, which cause poor cycle performance and safety issues, must be resolved. In addition, it is necessary to develop wide and thin Li metal anodes to increase not only the energy density, but also the design freedom of large-scale Li-metal-based batteries. We solved both issues by developing a novel approach involving the application of calendared stabilized Li metal powder (LiMP) electrodes as anodes. In this study, we fabricated a 21.5 cm wide and 40 mu m thick compressed LiMP electrode and investigated the correlation between the compression level and electrochemical performance. A high level of compression (40% compression) physically activated the LiMP surface to suppress the dendritic and mossy Li metal formation at high current densities. Furthermore, as a result of the LiMP self-healing because of electrochemical activation, the 40% compressed LiMP electrode exhibited an excellent cycle performance (reaching 90% of the initial discharge capacity after the 360th cycle), which was improved by more than a factor of 2 compared to that of a flat Li metal foil with the same thickness (90% of the initial discharge capacity after the 150th cycle).
机译:Li金属电极的商业化是电池界的长期目标。为了实现这一目标,必须解决李树枝状和苔藓李沉积的形成,导致循环性能和安全问题不佳。此外,有必要开发宽和薄的Li金属阳极,不仅可以增加能量密度,而且还增加了大规模的Li金属电池的设计自由。我们通过开发一种涉及将稳定的Li金属粉末(LIMP)电极作为阳极施用的新方法解决了这两个问题。在这项研究中,我们制造了21.5cm宽和40μm厚的压缩跛行电极,并研究了压缩水平与电化学性能之间的相关性。高水平的压缩(40%压缩)物理上活化跛行表面以抑制高电流密度的树突和苔藓锂金属形成。此外,由于电化学激活的跛行自愈合,40%压缩的跛行电极表现出优异的循环性能(在第360周期之后达到初始放电容量的90%),其提高了多于一个因素2与具有相同厚度相同厚度的扁平金属箔(在第150次循环后的初始放电容量的90%)相比。

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