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首页> 外文期刊>Electrochemical Energy Reviews >Electrolyte/Electrode Interfaces in All-Solid-State Lithium Batteries: A Review
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Electrolyte/Electrode Interfaces in All-Solid-State Lithium Batteries: A Review

机译:电解液/电极界面全固态锂电池:审查

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摘要

All-solid-state lithium batteries are promising next-generation energy storage devices that have gained increasing attention in the past decades due to their huge potential towards higher energy density and safety. As a key component, solid electrolytes have also attracted significant attention and have experienced major breakthroughs, especially in terms of Li-ion conductivity. However, the poor electrode compatibility of solid electrolytes can lead to the degradation of electrolyte/electrode interfaces, which is the major cause for failure in all-solid-state lithium batteries. To address this, this review will summarize the in-depth understanding of physical and chemical interactions between electrolytes and electrodes with a focus on the contact, charge transfer and Li dendrite formation occurring at electrolyte/electrode interfaces. Based on mechanistic analyses, this review will also briefly present corresponding strategies to enhance electrolyte/electrode interfaces through compositional modifications and structural designs. Overall, the comprehensive insights into electrolyte/electrode interfaces provided by this review can guide the future investigation of all-solid-state lithium batteries.
机译:全固态锂电池是有前途的下一代能源存储设备在过去的几十年中得到了越来越多的关注由于他们对更高的能源潜力巨大密度和安全。电解质也吸引了重要关注和有经验的专业突破,特别是锂离子导电性。兼容性的固体电解质会导致电解液/电极的降解接口,这是失败的主要原因在全固态锂电池。本文将总结深入对物理和化学的理解电解质和电极之间的相互作用重点是接触、电荷转移和李树突的形成发生电解液/电极界面。机械的分析,本文还将简要提出相应的策略提高电解液/电极界面成分和结构修改设计。电解液/电极界面提供审查可以指导未来的调查全固态锂电池。

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