Gu Rong, Zhang Da, Xu Shengtao, Guo Xiaoyu, Xiao Yuan, Sheng Zhimeng, Xu Qunjie, Xu Jinting, Zhu Sheng, Liao Kexuan, Gong Shuaiqi, Shi Penghui, Min YuLin
Shanghai Key Laboratory of Materials Protection and Advanced Materials Electric Power, Shanghai University of Electric Power, Shanghai, P. R. China.
Shanghai Key Lab of Chemical Assessment and Sustainability, School of Chemical Science and Engineering, Tongji University, Shanghai, P. R. China.
Nat Commun. 2025 Jul 1;16(1):5474. doi: 10.1038/s41467-025-60524-8.
Safe electrolytes operable over a wide temperature range are essential for lithium metal batteries, offering high redox interfacial stability, fast ion transport kinetics, and inherent safety. However, conventional electrolytes rarely achieve these characteristics simultaneously, typically sacrificing one to improve another. In this work, an ether-based thermoresponsive electrolyte is developed, in which the Li solvation structure varies with temperature and facilitates the formation of a polycrystalline electrode/electrolyte interface, enabling the desired properties under conventional salt concentrations. The solvation sheath is reconfigured by 1,3,5-trioxane, which promotes anion dissociation and enhances charge-transfer kinetics. Additionally, 1,3,5-trioxane triggers a cationic ring-opening polymerization of tetrahydrofuran at 60 °C, yielding oxidation-resistant ether-based polymers that improve high-temperature stability and safety. As a result, Li||LiNiCoMnO cells utilizing this electrolyte operate reliably across a broad temperature window (-60 to 60 °C). Furthermore, a practical 1.5 Ah Li|| NiCoMnO pouch cell delivers a capacity retention of 74.7% after 60 cycles at -40 °C and 0.05 C (20 h charge/discharge), with a specific energy of 317.1 Wh kg(including packaging foil).
对于锂金属电池而言,能够在较宽温度范围内工作的安全电解质至关重要,它需具备高氧化还原界面稳定性、快速离子传输动力学以及内在安全性。然而,传统电解质很少能同时具备这些特性,通常会牺牲其中一个特性来提升另一个特性。在这项工作中,开发了一种基于醚的热响应电解质,其中锂溶剂化结构随温度变化,并有助于形成多晶电极/电解质界面,从而在常规盐浓度下实现所需性能。溶剂化鞘层由1,3,5 - 三氧杂环己烷重新配置,它促进阴离子解离并增强电荷转移动力学。此外,1,3,5 - 三氧杂环己烷在60℃时引发四氢呋喃的阳离子开环聚合,生成抗氧化的醚基聚合物,提高高温稳定性和安全性。结果,使用这种电解质的Li||LiNiCoMnO电池在宽温度窗口(-60至60℃)内可靠运行。此外,一个实用的1.5 Ah Li||NiCoMnO软包电池在-40℃和0.05 C(20小时充/放电)下经过60次循环后容量保持率为74.7%,比能量为317.1 Wh kg(包括包装箔)。