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自形成混合相间层在锂金属上用于高性能锂硫电池。

Self-Formed Hybrid Interphase Layer on Lithium Metal for High-Performance Lithium-Sulfur Batteries.

机构信息

Department of Mechanical and Nuclear Engineering, The Pennsylvania State University , University Park, Pennsylvania 16802, United States.

Department of Chemical Engineering, The Pennsylvania State University , University Park, Pennsylvania 16802, United States.

出版信息

ACS Nano. 2018 Feb 27;12(2):1500-1507. doi: 10.1021/acsnano.7b08035. Epub 2018 Feb 2.

Abstract

Lithium-sulfur (Li-S) batteries are promising candidates for high-energy storage devices due to high theoretical capacities of both the sulfur cathode and lithium (Li) metal anode. Considerable efforts have been devoted to improving sulfur cathodes. However, issues associated with Li anodes, such as low Coulombic efficiency (CE) and growth of Li dendrites, remain unsolved due to unstable solid-electrolyte interphase (SEI) and lead to poor capacity retention and a short cycling life of Li-S batteries. In this work, we demonstrate a facile and effective approach to fabricate a flexible and robust hybrid SEI layer through co-deposition of aromatic-based organosulfides and inorganic Li salts using poly(sulfur-random-1,3-diisopropenylbenzene) as an additive in an electrolyte. The aromatic-based organic components with planar backbone conformation and π-π interaction in the SEI layers can improve the toughness and flexibility to promote stable and high efficient Li deposition/dissolution. The as-formed durable SEI layer can inhibit dendritic Li growth, enhance Li deposition/dissolution CE (99.1% over 420 cycles), and in turn enable Li-S batteries with good cycling stability (1000 cycles) and slow capacity decay. This work demonstrates a route to address the issues associated with Li metal anodes and promote the development of high-energy rechargeable Li metal batteries.

摘要

锂硫(Li-S)电池因其硫阴极和锂(Li)金属阳极的高理论容量而成为高能量存储设备的有前途的候选者。人们已经投入了相当大的努力来改进硫阴极。然而,由于不稳定的固体电解质界面(SEI),与 Li 阳极相关的问题,如低库仑效率(CE)和 Li 枝晶的生长,仍然没有得到解决,这导致 Li-S 电池的容量保持率差和循环寿命短。在这项工作中,我们通过使用聚(硫-随机-1,3-二异丙烯基苯)作为添加剂在电解质中共同沉积芳基有机硫化物和无机 Li 盐,展示了一种制造灵活且坚固的混合 SEI 层的简便有效方法。SEI 层中具有平面骨架构象和π-π相互作用的芳基有机成分可以提高韧性和灵活性,以促进稳定和高效的 Li 沉积/溶解。形成的耐用 SEI 层可以抑制枝晶 Li 的生长,提高 Li 沉积/溶解 CE(420 次循环中为 99.1%),从而使 Li-S 电池具有良好的循环稳定性(1000 次循环)和缓慢的容量衰减。这项工作展示了一种解决与 Li 金属阳极相关的问题并促进高能可再充电 Li 金属电池发展的途径。

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