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首页> 外文期刊>Angewandte Chemie >Lithium-Sulfur Batteries under Lean Electrolyte Conditions: Challenges and Opportunities
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Lithium-Sulfur Batteries under Lean Electrolyte Conditions: Challenges and Opportunities

机译:瘦电解质条件下的锂 - 硫磺电池:挑战和机遇

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摘要

The development of energy-storage devices has received increasing attention as a transformative technology to realize a low-carbon economy and sustainable energy supply. Lithium-sulfur (Li-S) batteries are considered to be one of the most promising next-generation energy-storage devices due to their ultrahigh energy density. Despite the extraordinary progress in the last few years, the actual energy density of Li-S batteries is still far from satisfactory to meet the demand for practical applications. Considering the sulfur electrochemistry is highly dependent on solid-liquid-solid multi-phase conversion, the electrolyte amount plays a primary role in the practical performances of Li-S cells. Therefore, a lean electrolyte volume with low electrolyte/sulfur ratio is essential for practical Li-S batteries, yet under these conditions it is highly challenging to achieve acceptable electrochemical performances regarding sulfur kinetics, discharge capacity, Coulombic efficiency, and cycling stability especially for high-sulfur-loading cathodes. In this Review, the impact of the electrolyte/sulfur ratio on the actual energy density and the economic cost of Li-S batteries is addressed. Challenges and recent progress are presented in terms of the sulfur electrochemical processes: the dissolution-precipitation conversion and the solid-solid multi-phasic transition. Finally, prospects of future lean-electrolyte Li-S battery design and engineering are discussed.
机译:储能设备的开发已接受越来越受到变形技术,以实现低碳经济和可持续能源供应。锂 - 硫(LI-S)电池被认为是由于其超高能量密度引起的最有前进的能量储存装置之一。尽管在过去几年存在非凡的进展,但LI-S电池的实际能量密度仍然远非令人满意,以满足对实际应用的需求。考虑到硫电化学高度依赖于固体 - 固体多相转化,电解质量在Li-S细胞的实际性能中起主要作用。因此,具有低电解质/硫比的贫电解质体积对于实用的Li-S电池是必不可少的,但在这些条件下,在这些条件下,实现关于硫动态,放电容量,库仑效率和循环稳定性的可接受的电化学性能,特别是高度挑战-sulfur加载阴极。在本文中,解决了电解质/硫比对实际能量密度的影响和Li-S电池的经济成本。硫化电化学方法方面提出了挑战和最近进展:溶解沉淀转化率和固体固体多相转变。最后,讨论了未来瘦电解液Li-S电池设计和工程的前景。

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