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Advanced Characterization Techniques in Promoting Mechanism Understanding for Lithium-Sulfur Batteries

机译:促进锂硫电池机理理解的高级表征技术

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摘要

Due to their numerous advantages, such as high specific capacity, lithium-sulfur batteries (Li-S batteries) have attracted much attention as next-generation energy storage systems. To meet future needs for commercial application, Li-S batteries will require both improved cycle life and high energy density. It is of critical importance to understand the fundamental mechanisms in Li-S systems to further improve the overall battery performance. Various advanced characterization techniques, over the past few years, have proven their important role in promoting the mechanism understanding for Li-S batteries. Here, the recent progress of mechanism understanding, including redox reactions, Li polysulfides dissolution, etc., in Li-S systems based on the advanced characterization techniques is reviewed. Special focus is placed on how these advanced characterization techniques are being employed and what characteristic or capability they possess. The importance of the combination of multiple characterization techniques, differences between ex situ and in situ experimental methods, as well as effects of characterization conditions in Li-S batteries are also discussed.
机译:锂硫电池(Li-S电池)由于具有许多优点(例如高比容量),已成为下一代储能系统的关注焦点。为了满足未来的商业应用需求,Li-S电池将需要更长的循环寿命和更高的能量密度。了解Li-S系统的基本机制以进一步提高电池整体性能至关重要。在过去的几年中,各种先进的表征技术已经证明了它们在增进对Li-S电池机理的理解中的重要作用。在此,综述了基于先进的表征技术在Li-S系统中机理理解的最新进展,包括氧化还原反应,多硫化锂的溶解等。特别关注如何使用这些高级表征技术以及它们具有什么特征或功能。还讨论了多种表征技术相结合的重要性,非原位和原位实验方法之间的差异以及锂锂电池中表征条件的影响。

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