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Mixed Lithium Oxynitride/Oxysulfide as an Interphase Protective Layer To Stabilize Lithium Anodes for High-Performance Lithium-Sulfur Batteries

机译:混合氧锂/氧化硫化物作为间相保护层,以稳定高性能锂 - 硫电池的锂阳极

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摘要

Lithium metal is strongly recognized as a promising anode material for next-generation high-energy-density systems. However, unstable solid electrolyte interphase and uncontrolled lithium dendrites growth induce severe capacity decay and short cycle life accompanied by high security risks. Here, we propose a simple method for constructing an artificial solid electrolyte interphase layer on the surface of lithium metal through spontaneous reaction, where ammonium persulfate and lithium nitrate are exploited as oxidants. The satisfactory artificial protective layer with uniform and dense morphology is composed of mixed lithium compounds, mainly including LixSOy and LixNOy species, which could effectively stabilize the interphase between electrolyte and lithium metal anode and restrain the "shuttle effect" of polysulfides. By employing the premodified lithium metal as anodes for lithium-sulfur batteries, the resulting cells exhibit excellent cycle stability (capacity decay of 0.09% per cycle over 300 cycles at 1 C and Coulombic efficiency of over 98%) and outstanding rate capability (850.8 mAh g(-1) even at 4 C). Hence, introducing a stable artificial protective layer to protect lithium anode delivers a new strategy for solving the issues related to lithium-metal batteries.
机译:锂金属被强烈认识为下一代高能密度系统的有希望的阳极材料。然而,不稳定的固体电解质相互作用和不受控制的锂枝晶生长诱导严重的容量衰减和短暂的循环寿命,伴随着高安全性风险。这里,我们提出了一种通过自发反应构建锂金属表面上的人造固体电解质相互关节层的简单方法,其中过硫酸铵和硝酸锂被利用为氧化剂。具有均匀和致密形态的令人满意的人造保护层由混合锂化合物组成,主要包括Lixsoy和Lixnoy物种,可以有效地稳定电解质和锂金属阳极之间的间之间并抑制多硫化物的“梭效果”。通过使用原型锂金属作为锂 - 硫含量的阳极,所得细胞具有优异的循环稳定性(容量衰减为每周循环的0.09%,每循环超过300个循环,并含有98%以上的库仑效率)和出色的速度能力(850.8 mAh) G(-1)即使在4 c)。因此,引入稳定的人造保护层以保护锂阳极提供了解决与锂金属电池相关的问题的新策略。

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