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首页> 外文期刊>Advanced Functional Materials >Addressing Passivation in Lithium-Sulfur Battery Under Lean Electrolyte Condition
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Addressing Passivation in Lithium-Sulfur Battery Under Lean Electrolyte Condition

机译:贫电解质条件下锂硫电池的钝化处理

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Reducing the electrolyte amount is critical for the high specific energy of lithium-sulfur (Li-S) batteries in practice. The reduced electrolyte condition (a so-called "lean electrolyte") raises a complex situation for sulfur redox reactions since the reactions rely on the electrolyte mediation. The insulating nature of discharge product Li2S and its uncontrollable accumulation (passivation) at the cathode interface is one of the major challenges for stable cycling of a Li-S battery under lean electrolyte condition. In this study, it is presented that the NH4TFSI additive in electrolyte solution greatly alleviates the passivation issue in Li-S batteries under lean electrolyte conditions. The ammonium additive enhances the dissociation of Li2S and largely reduces the insoluble and large Li2S particles in the sulfur cathodes, which facilitate the reversible and sustainable redox reactions of sulfur. Therefore, the cycle life of Li-S batteries under lean electrolyte conditions is significantly improved. In addition, it is found that the morphology of Li anodes is dependent on the cathode structures. An ammonium additive enables homogeneous surface of cathode and Li anode and extended cycle life.
机译:在实践中,减少电解液量对于锂硫(Li-S)电池的高比能至关重要。降低的电解质条件(所谓的“贫电解质”)为硫氧化还原反应带来了复杂的情况,因为该反应依赖于电解质的介导。放电产物Li2S的绝缘特性及其在阴极界面的不可控制的积累(钝化)是在贫电解质条件下稳定锂电池稳定循环的主要挑战之一。在这项研究中,提出了在稀电解液条件下,电解液中的NH4TFSI添加剂极大地减轻了Li-S电池中的钝化问题。铵添加剂可增强Li2S的离解并大大减少硫阴极中不溶的大Li2S颗粒,从而促进了硫的可逆和可持续的氧化还原反应。因此,Li-S电池在稀薄电解质条件下的循环寿命得到显着改善。另外,发现Li阳极的形态取决于阴极结构。铵添加剂可实现阴极和锂阳极的均匀表面并延长循环寿命。

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