Department of Applied Physics & Research Institute for Smart Energy, The Hong Kong Polytechnic University, Hung Hom, Hong Kong, 999077, P. R. China.
Angew Chem Int Ed Engl. 2023 Jul 10;62(28):e202303950. doi: 10.1002/anie.202303950. Epub 2023 May 31.
Ether electrolytes are promising for lithium metal batteries. Despite the intensive research in recent years, most state-of-the-art ether electrolytes still cannot form reliable electrode-electrolyte interfaces in NCM811-Li batteries at diluted concentrations, especially in those operating at elevated temperatures. We report a simple but effective strategy to break this bottleneck and stabilize interfaces in high-temperature NCM811-Li batteries in ether electrolytes. We propose that by gradually extending the terminal groups of glycol diethers from methyl groups to n-butyl groups, the comprehensive stability of ether electrolytes is improved. An anion-dominated solvation structure is realized at a concentration of 1 M. Accordingly, the electrode-electrolyte interactions are suppressed, and a thinner, denser, and more inorganic-rich solid- /cathode-electrolyte interface is achieved. Additionally, the surface phase transition and structural degradation of NCM811 cathode are alleviated. Consequently, in the ethylene glycol dibutyl ether-based electrolyte, the Coulombic efficiency for Li-Cu cells working at 60 °C is boosted to 99.41 % with a cycling life of over 200 cycles. The lifespan of high-temperature NCM811-Li cells is prolonged by more than 400 % with a stable average Coulombic efficiency of 99.77 % at quasi-practical conditions of 50 μm Li, lean electrolyte of 10 μL mAh , and medium-high cathode loading of >2.2 mAh cm .
醚类电解质在锂金属电池中具有广阔的应用前景。尽管近年来研究十分活跃,但大多数最先进的醚类电解质在稀释浓度下,尤其是在高温下,仍无法在 NCM811-Li 电池中形成可靠的电极-电解质界面。我们报告了一种简单而有效的策略,可以打破这一瓶颈,稳定高温下 NCM811-Li 电池中醚类电解质的界面。我们提出,通过逐渐将二醇二醚的端基从甲基扩展到正丁基,可以提高醚类电解质的综合稳定性。在 1 M 的浓度下,实现了阴离子主导的溶剂化结构。因此,抑制了电极-电解质相互作用,形成了更薄、更致密且无机成分更丰富的固/阴极-电解质界面。此外,还缓解了 NCM811 阴极的表面相变和结构降解。因此,在乙二醇二丁基醚基电解质中,60°C 下工作的 Li-Cu 电池的库仑效率提高到 99.41%,循环寿命超过 200 次。在准实际条件下,即 50μm 的 Li、10μLmAh 的贫电解质和 >2.2mAhcm 的中高阴极负载下,高温 NCM811-Li 电池的寿命延长了 400%以上,平均库仑效率稳定在 99.77%。