作者
John Holoubek, Haodong Liu, Zhaohui Wu, Yijie Yin, Xing Xing, Guorui Cai, Sicen Yu, Hongyao Zhou, Tod A Pascal, Zheng Chen, Ping Liu
发表日期
2021/3
期刊
Nature energy
卷号
6
期号
3
页码范围
303-313
出版商
Nature Publishing Group UK
简介
Lithium metal batteries hold promise for pushing cell-level energy densities beyond 300 Wh kg−1 while operating at ultra-low temperatures (below −30 °C). Batteries capable of both charging and discharging at these temperature extremes are highly desirable due to their inherent reduction in the need for external warming. Here we demonstrate that the local solvation structure of the electrolyte defines the charge-transfer behaviour at ultra-low temperature, which is crucial for achieving high Li metal Coulombic efficiency and avoiding dendritic growth. These insights were applied to Li metal full-cells, where a high-loading 3.5 mAh cm−2 sulfurized polyacrylonitrile (SPAN) cathode was paired with a onefold excess Li metal anode. The cell retained 84% and 76% of its room temperature capacity when cycled at −40 and −60 °C, respectively, which presented stable performance over 50 cycles. This work provides …
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