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Tailoring the Mechanical and Electrochemical Properties of an Artificial Interphase for High-Performance Metallic Lithium Anode

机译:用于高性能金属锂阳极人工间互相定制的机械和电化学性能

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Abstract Lithium metal is regarded as the “Holy Grail” of anode materials due to its low electrochemical potential and high theoretical capacity. Unfortunately, its unstable solid electrolyte interphase (SEI) leads to low Coulombic efficiency (CE) and serious safety issues. Herein, a hybrid nanoscale polymeric protective film with tunable composition and improved stiffness is developed by incorporating aluminum crosslinkers into the polymer chains. The Li plating/stripping process is regulated through the protective coating and the dendrite growth is effectively suppressed. Promisingly, the protected Li can deliver stable performance for more than 350 h with a cycling capacity of 2 mAh cm−2 without a notable increase in overpotential. Moreover, a stable charge/discharge cycling in Li–O2 batteries with the protected Li can be maintained for more than 600 h. This work provides guidance on the rational design of electrode interfaces and opens up new opportunities for the fabrication of next‐generation energy storage systems.
机译:由于其低电化学潜力和高理论能力,抽象的锂金属被视为阳极材料的“圣杯”。不幸的是,其不稳定的固体电解质相互作用(SEI)导致低库仑效率(CE)和严重的安全问题。这里,通过将铝交联剂掺入聚合物链中,开发了一种具有可调谐组合物和改进的刚度的杂化纳米级聚合物保护膜。通过保护涂层调节Li电镀/汽提工艺,有效地抑制树突生长。承诺,受保护的LI可以提供超过350小时的稳定性能,循环能力为2 Mah CM-2,过电位的显着增加。此外,可以保持Li-O2电池中的稳定充电/放电,可以保持600小时以上。这项工作为电极接口的合理设计提供了指导,并开辟了制造下一代能量存储系统的新机会。

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