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用于高压水系锂离子电池的绿色不对称双环共溶剂分子

A Green Asymmetric Bicyclic Co-Solvent Molecule for High-Voltage Aqueous Lithium-Ion Batteries.

作者信息

Wang Yan, Ou Ting, Dong Yue, Chen Lu, Huang Yunjie, Sun Delong, Qiang Wei, Pei Xiaopeng, Li Yiju, Tan Ying

机构信息

Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, 325000, China.

Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan, 430074, China.

出版信息

Adv Mater. 2024 Apr;36(15):e2311009. doi: 10.1002/adma.202311009. Epub 2024 Jan 17.

Abstract

Hybridizing aqueous electrolytes with organic co-solvents can effectively expand the voltage window of aqueous electrolytes while reducing salt usage, but most reported co-solvents are usually flammable and toxic, hardly achieving compatibility between safety and electrochemical performance. Here, a new non-flammable and non-toxic low-salt-concentration (1.85 m) aqueous electrolyte is reported using the green co-solvent isosorbide dimethyl ether (IDE). Owing to its unique 3D molecular structure, IDE can form a five-membered ring structure by binding the Li ion. The steric hindrance effect from IDE weakens its solvation ability, generating anion-participated solvation structures that produce a robust and uniform LiF-rich solid electrolyte interphase layer while containing elastic IDE-derived organics. Moreover, the multiple O atoms in IDE can effectively regulate the intermolecular hydrogen bonding networks, reducing HO molecule activity and expanding the electrochemical window. Such unique solvation structures and optimized hydrogen bonding networks enabled by IDE effectively suppress electrode/electrolyte interfacial side reactions, achieving a 4.3 V voltage window. The as-developed LiTiO(LTO)||LiMnO(LMO) full cell delivers outstanding cycling performance over 450 cycles at 2 C. The proposed green hybrid aqueous electrolyte provides a new pathway for developing high-voltage aqueous lithium batteries.

摘要

将水性电解质与有机共溶剂混合可以有效扩大水性电解质的电压窗口,同时减少盐的用量,但大多数报道的共溶剂通常易燃且有毒,难以实现安全性和电化学性能之间的兼容。在此,报道了一种使用绿色共溶剂异山梨醇二甲醚(IDE)的新型不可燃、无毒的低盐浓度(1.85 m)水性电解质。由于其独特的三维分子结构,IDE可以通过与锂离子结合形成五元环结构。IDE的空间位阻效应削弱了其溶剂化能力,产生了阴离子参与的溶剂化结构,该结构在包含弹性的源自IDE的有机物的同时,产生了坚固且均匀的富含LiF的固体电解质界面层。此外,IDE中的多个氧原子可以有效调节分子间氢键网络,降低水分子活性并扩大电化学窗口。由IDE实现的这种独特的溶剂化结构和优化的氢键网络有效地抑制了电极/电解质界面的副反应,实现了4.3 V的电压窗口。所开发的LiTiO(LTO)||LiMnO(LMO)全电池在2 C下经过450次循环仍具有出色的循环性能。所提出的绿色混合水性电解质为开发高压水性锂电池提供了一条新途径。

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