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原位生成的有机/无机混合固态电解质界面层使锂金属阳极具有抑制枝晶生长的能力、高倍率性能和长寿命稳定性。

An In Situ Generated Organic/Inorganic Hybrid SEI Layer Enables Li Metal Anodes with Dendrite Suppression Ability, High-Rate Capability, and Long-Life Stability.

作者信息

Han Dengji, Wang Zhongli, Chen Shuiyin, Zhou Ji, Chen Shang, Wang Manyun, Wu Dandan, Meng Xiaodong, Bielawski Christopher W, Geng Jianxin

机构信息

State Key Laboratory of Separation Membranes and Membrane Processes, Tianjin Key Laboratory of Advanced Fibers and Energy Storage, School of Material Science and Engineering, Tiangong University, No. 399 BinShuiXi Road, XiQing District, Tianjin, 300387, China.

State Key Laboratory of Organic-Inorganic Composites, Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, 15 North Third Ring East Road, Chaoyang District, Beijing, 100029, China.

出版信息

Small. 2024 Dec;20(49):e2405453. doi: 10.1002/smll.202405453. Epub 2024 Sep 12.

Abstract

High-quality solid electrolyte interphase (SEI) layers can effectively suppress the growth of Li dendrites and improve the cycling stability of lithium metal batteries. Herein, 1-(6-bromohexanoyl)-3-butylurea is used to construct an organic/inorganic hybrid (designated as LiBr-HBU) SEI layer that features a uniform and compact structure. The LiBr-HBU SEI layer exhibits superior electrolyte wettability and air stability as well as strong attachment to Li foils. The LiBr-HBU SEI layer achieves a Li conductivity of 2.75 × 10 S cm, which is ≈50-fold higher than the value measured for a native SEI layer. A Li//Li symmetric cell containing the LiBr-HBU SEI layer exhibits markedly improved cyclability when compared with the cell containing a native SEI layer, especially at a high current density (e.g., cycling life up to 1333 h at 15 mA cm). The LiBr-HBU SEI layer also improves the performance of lithium-sulfur cells, particularly the rate capability (548 mAh g at 10 C) and cycling stability (513 mAh g at 0.5 C after 500 cycles). The methodology described can be extended to the commercial processing of Li metal anodes as the artificial SEI layer also protects Li metal against corrosion.

摘要

高质量的固体电解质界面(SEI)层能够有效抑制锂枝晶的生长,并提高锂金属电池的循环稳定性。在此,1-(6-溴己酰基)-3-丁基脲被用于构建一种具有均匀致密结构的有机/无机混合(命名为LiBr-HBU)SEI层。LiBr-HBU SEI层表现出优异的电解质润湿性和空气稳定性,以及与锂箔的强附着力。LiBr-HBU SEI层实现了2.75×10 S cm的锂电导率,这比原生SEI层测得的值高约50倍。与含有原生SEI层的电池相比,含有LiBr-HBU SEI层的Li//Li对称电池表现出显著改善的循环性能,特别是在高电流密度下(例如,在15 mA cm下循环寿命长达1333 h)。LiBr-HBU SEI层还改善了锂硫电池的性能,尤其是倍率性能(在10 C下为548 mAh g)和循环稳定性(在0.5 C下500次循环后为513 mAh g)。所描述的方法可以扩展到锂金属负极的商业加工,因为人工SEI层也能保护锂金属免受腐蚀。

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