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用于钠离子电池的醚基电解质。

Ether-based electrolytes for sodium ion batteries.

作者信息

Li Ying, Wu Feng, Li Yu, Liu Mingquan, Feng Xin, Bai Ying, Wu Chuan

机构信息

School of Materials Science and Engineering, Beijing Institute of Technology, Beijing 100081, P. R. China.

Yangtze Delta Region Academy of Beijing Institute of Technology, Jiaxing 314019, P. R. China.

出版信息

Chem Soc Rev. 2022 Jun 6;51(11):4484-4536. doi: 10.1039/d1cs00948f.

Abstract

Sodium-ion batteries (SIBs) are considered to be strong candidates for large-scale energy storage with the benefits of cost-effectiveness and sodium abundance. Reliable electrolytes, as ionic conductors that regulate the electrochemical reaction behavior and the nature of the interface and electrode, are indispensable in the development of advanced SIBs with high Coulombic efficiency, stable cycling performance and high rate capability. Conventional carbonate-based electrolytes encounter numerous obstacles for their wide application in SIBs due to the formation of a dissolvable, continuous-thickening solid electrolyte interface (SEI) layer and inferior stability with electrodes. Comparatively, ether-based electrolytes (EBEs) are emerging in the secondary battery field with fascinating properties to improve the performance of batteries, especially SIBs. Their stable solvation structure enables highly reversible solvent-co-intercalation reactions and the formation of a thin and stable SEI. However, although EBEs can provide more stable cycling and rapid sodiation kinetics in electrodes, benefitting from their favorable electrolyte/electrode interactions such as chemical compatibility and good wettability, their special chemistry is still being investigated and puzzling. In this review, we provide a thorough and comprehensive overview on the developmental history, fundamental characteristics, superiorities and mechanisms of EBEs, together with their advances in other battery systems. Notably, the relation among electrolyte science, interfacial chemistry and electrochemical performance is highlighted, which is of great significance for the in-depth understanding of battery chemistry. Finally, future perspectives and potential directions are proposed to navigate the design and optimization of electrolytes and electrolyte/electrode interfaces for advanced batteries.

摘要

钠离子电池(SIBs)因其成本效益高和钠资源丰富的优势,被认为是大规模储能的有力候选者。可靠的电解质作为调节电化学反应行为以及界面和电极性质的离子导体,在开发具有高库仑效率、稳定循环性能和高倍率性能的先进钠离子电池中不可或缺。传统的碳酸盐基电解质由于形成可溶解的、持续增厚的固体电解质界面(SEI)层以及与电极的稳定性较差,在钠离子电池中的广泛应用面临诸多障碍。相比之下,醚基电解质(EBEs)在二次电池领域崭露头角,具有改善电池性能的迷人特性,尤其是在钠离子电池中。它们稳定的溶剂化结构能够实现高度可逆的溶剂共嵌入反应,并形成薄而稳定的SEI。然而,尽管醚基电解质由于其良好的电解质/电极相互作用(如化学兼容性和良好的润湿性),可以在电极中提供更稳定的循环和快速的钠化动力学,但其特殊的化学性质仍在研究中且令人困惑。在这篇综述中,我们全面且综合地概述了醚基电解质的发展历程、基本特性、优势和机理,以及它们在其他电池系统中的进展。值得注意的是,突出了电解质科学、界面化学和电化学性能之间的关系,这对于深入理解电池化学具有重要意义。最后,提出了未来的展望和潜在方向,以指导先进电池电解质和电解质/电极界面的设计与优化。

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