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Stabilizing Lithium Plating by a Biphasic Surface Layer Formed InSitu

机译:通过形成insitu的双相表面层稳定锂电镀

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摘要

The dendritic growth of Li metal leads to electrode degradation and safety concerns, impeding its application in building high energy density batteries. Forming a protective layer on the Li surface that is electron-insulating, ion-conducting, and maintains an intimate interface is critical. We herein demonstrate that Li plating is stabilized by a biphasic surface layer composed of a lithium-indium alloy and a lithium halide, formed insitu by the reaction of an electrolyte additive with Li metal. This stabilization is attributed to the fast lithium migration though the alloy bulk and lithium halide surface, which is enabled by the electric field across the layer that is established owing to the electron-insulating halide phase. A greatly stabilized Li-electrolyte interface and dendrite-free plating over 400 hours in Li vertical bar Li symmetric cells using an alkyl carbonate electrolyte is demonstrated. High energy efficiency operation of the Li4Ti5O12 (LTO)vertical bar Li cell over 1000 cycles is achieved.
机译:Li金属的树突生长导致电极降解和安全问题,妨碍其在建造高能密度电池方面的应用。在Li表面上形成保护层,其是电子绝缘的,离子导电,并保持紧密界面至关重要。我们在本文中表明,通过由锂 - 铟合金和卤化锂组成的双相表面层稳定,通过用Li金属的电解质添加剂的反应形成Insitu的双相表面层稳定。这种稳定化归因于诸如合金体积和卤化锂表面的快速锂迁移,该锂覆盖物表面通过在由于电子绝缘卤化物相的层上的电场而使能。证实了使用碳酸烷基电解质的Li垂直条Li对称电池在400小时内具有极大的稳定的Li-电解质界面和树突式电镀。达到1000个循环的Li4Ti5O12(LTO)垂直条Li细胞的高能效操作。

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