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用于锂负极的石墨烯纳米带上的固体电解质界面复合

Solid Electrolyte Interphase Recombination on Graphene Nanoribbons for Lithium Anode.

作者信息

Shi Xiaowei, Liu Jiamei, Zhang Huandi, Xue Zhuangzhuang, Zhao Zehua, Zhang Yan, Wang Guolong, Akbar Lubna, Li Lei

出版信息

ACS Nano. 2024 Mar 26;18(12):8827-8838. doi: 10.1021/acsnano.3c11796. Epub 2024 Mar 18.

Abstract

The practical application of lithium metal batteries is hindered by the lithium dendrite issue, which is seriously affected by the composition and structure of the solid electrolyte interphase (SEI). Modifying the SEI can regulate lithium dendrite formation and growth. Here, we experimentally realize a Li protective layer of LiTFSI-ether electrolyte induced a natural SEI grafted on graphene nanoribbons (SEI@GNRs) via their reactions. The experimental results and theoretical calculations uncover that the 3D structure of SEI@GNRs can reduce the local current density and Li flux. The natural SEI in SEI@GNRs, especially the rich inorganic species of LiF, LiN, and LiS, decreases the Li nucleation overpotential, makes Li ion deposition and nucleation uniform, and isolates electron transport. Their synergetic effect suppresses Li dendrite formation and growth, increasing the electrochemical performance of lithium metal batteries. The design strategy is beneficial for the development of lithium metal batteries.

摘要

锂金属电池的实际应用受到锂枝晶问题的阻碍,而这一问题受到固体电解质界面(SEI)的组成和结构的严重影响。修饰SEI可以调节锂枝晶的形成和生长。在此,我们通过实验实现了一种由LiTFSI-醚电解质诱导的锂保护层,该保护层通过其反应在石墨烯纳米带(SEI@GNRs)上接枝了天然SEI。实验结果和理论计算表明,SEI@GNRs的三维结构可以降低局部电流密度和锂通量。SEI@GNRs中的天然SEI,特别是富含LiF、LiN和LiS的无机物种,降低了锂成核过电位,使锂离子沉积和成核均匀,并隔离电子传输。它们的协同效应抑制了锂枝晶的形成和生长,提高了锂金属电池的电化学性能。该设计策略有利于锂金属电池的发展。

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