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首页> 外文期刊>Electrochemical Energy Reviews >Recent Progress in All-Solid-State Lithium-Sulfur Batteries Using High Li-Ion Conductive Solid Electrolytes
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Recent Progress in All-Solid-State Lithium-Sulfur Batteries Using High Li-Ion Conductive Solid Electrolytes

机译:在全固态锂硫最近的进展使用高的锂离子电池导电固体电解质

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Rechargeable lithium-sulfur (Li-S) batteries are one of the most promising next-generation energy storage systems due to their extremely high energy densities and low cost compared with state-of-the-art lithium-ion batteries. However, the main obstacles of conventional Li—S batteries arise from the dissolution of lithium polysulfides in organic liquid electrolytes and corresponding safety issues. To address these issues, an effective approach is to replace conventional liquid electrolytes with solid-state electrolytes. In this review, recent progress in the development of solid electrolytes, including solid polymer electrolytes and inorganic glass/ceramic solid electrolytes, along with corresponding all-solid-state Li—S batteries (ASSLSBs) and related interfacial issues at the electrode/electrolyte interface, will be systematically summarized. In addition, the importance of various solid-state lithium ion conductors in ASSLSBs will be discussed followed by detailed presentations on the development of various forms of sulfur-based positive electrode materials (e.g., elemental sulfur, lithium sulfide, metal sulfides, lithium thiophosphates, and lithium polysulfidophosphates) along with key interfacial challenges at the electrode/solid electrolyte interface (cathode/SE and anode/SE). Finally, this review will provide a brief outlook on the future research of ASSLSBs.
机译:可充电锂硫电池(Li-S)最有前途的新一代能源之一存储系统由于其极高的能量密度和低成本与之相比先进的锂离子电池。常规的Li-S电池的主要障碍源于锂的溶解多硫化合物在有机液体电解质和相应的安全问题。问题,一个有效的方法来代替传统液态与固态电解质电解质。固体电解质的发展,包括固体聚合物电解质和无机玻璃/陶瓷固体电解质相应的全固态Li-S电池(ASSLSBs)和相关的界面问题电极/电解液界面,将系统地总结了。各种固态锂离子的重要性导体在ASSLSBs将随后讨论通过详细的报告的发展各种形式的含硫正极材料(如元素硫、锂硫化物、金属硫化物、硫代磷酸盐锂,和锂polysulfidophosphates)键在电极/固体界面的挑战电解液界面(阴极/ SE和阳极/ SE)。最后,本文将提供一个简要展望ASSLSBs未来的研究。

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