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首页> 外文期刊>Advanced materials interfaces >Sulfur Redox Reactions at Working Interfaces in Lithium-Sulfur Batteries: A Perspective
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Sulfur Redox Reactions at Working Interfaces in Lithium-Sulfur Batteries: A Perspective

机译:在锂 - 硫磺电池的工作界面处硫磺氧化还原反应:一种观点

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Lithium-sulfur (Li-S) batteries have been strongly considered as one of the most promising future energy storage systems because of ultrahigh theoretical energy density of 2600 Wh kg~(-1). The natural abundance, affordable cost, and environmental benignity of elemental sulfur constitute additional advantages. However, complicated reaction behaviors at working electrode/electrolyte interfaces that involve multiphase conversion and multistep ion/electron diffusion during sulfur redox reactions have impeded the thorough understanding of Li-S chemistry and its practical applications. This perspective article highlights the influence of the ion/electron transport and reaction regulation through electrocatalysis or redox mediation at electrode/electrolyte interfaces on various interfacial sulfur redox reactions (liquid-liquid-solid interconversion between soluble lithium polysulfide with different chain lengths and insoluble lithium sulfides in liquid-electrolyte Li-S batteries and direct solid-solid conversion between sulfur and Li_2S in all-solid-state Li-S batteries). The current status, existing challenges, and future directions are discussed and prospected, aiming at shedding fresh light on fundamental understanding of interfacial sulfur redox reactions and guiding the rational design of electrode/electrolyte interfaces for next-generation Li-S batteries with high energy density and long cycle life.
机译:锂 - 硫磺(LI-S)电池被强烈被认为是由于超高理论能量密度为2600WH〜(1)的最有前途的未来能量存储系统之一。元素硫的天然丰富,实惠的成本和环境良性构成了额外的优势。然而,在硫磺氧化还原反应期间涉及多相转化和多体离子/电子扩散的工作电极/电解质界面处的复杂反应行为阻碍了Li-S化学及其实际应用的彻底了解。该透视文章突出了在各种界面硫氧化还原反应上的电极/电解质界面的电常分或氧化还原调解的影响或氧化还原调解(溶于锂多硫化物与不同链长的溶于锂多硫化物和不溶性锂硫化物之间的液 - 液 - 固体互连)的影响在全固态LI-S电池中含有液体电解质Li-S电池和直接固体 - 固体转化率。讨论和展望现状,现有挑战和未来方向,旨在缩小新鲜灯对界面硫氧化还原反应的基本理解,并指导具有高能量密度的下一代LI-S电池的电极/电解质界面的合理设计和长循环生活。

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