Li Zhendong, Chen Zhenlian, Sun Nannan, Wang Deyu, Yao Xiayin, Peng Zhe
Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, 315201, PR China.
School of Optoelectronic Materials & Technology, Jianghan University, Wuhan, 430056, China.
Angew Chem Int Ed Engl. 2024 May 6;63(19):e202400876. doi: 10.1002/anie.202400876. Epub 2024 Mar 28.
Lithium (Li) metal batteries (LMBs) are deemed as ones of the most promising energy storage devices for next electrification applications. However, the uneven Li electroplating process caused by the diffusion-limited Li transportation at the Li metal surface inherently promotes the formation of dendritic morphology and instable Li interphase, while the sluggish Li transfer kinetic can also cause lithiation-induced stress on the cathode materials suffering from serious structural stability. Herein, a novel electrolyte designing strategy is proposed to accelerate the Li transfer by introducing a trace of large organic polar molecules of lithium phytate (LP) without significantly altering the electrolyte structure. The LP molecules can afford a competitive solvent attraction mechanism against the solvated Li, enhancing both the bulk and interfacial Li transfer kinetic, and creating better anode/cathode interfaces to suppress the side reactions, resulting in much improved cycling efficiency of LMBs. Using LP-based electrolyte, the performance of LMB pouch cell with a practical capacity of ~1.5 Ah can be improved greatly. This strategy opens up a novel electrolyte designing route for reliable LMBs.
锂(Li)金属电池(LMBs)被认为是下一代电气化应用中最有前途的储能装置之一。然而,锂金属表面受扩散限制的锂传输导致的不均匀锂电镀过程,本质上促进了枝晶形态的形成和不稳定的锂界面相,而缓慢的锂转移动力学也会在遭受严重结构稳定性问题的阴极材料上引起锂化诱导应力。在此,提出了一种新颖的电解质设计策略,通过引入微量的植酸锂(LP)大有机极性分子来加速锂转移,而不会显著改变电解质结构。LP分子可以提供一种与溶剂化锂竞争的溶剂吸引机制,增强本体和界面锂转移动力学,并创建更好的阳极/阴极界面以抑制副反应,从而大大提高LMBs的循环效率。使用基于LP的电解质,可以大大提高实际容量约为1.5 Ah的LMB软包电池的性能。该策略为可靠的LMBs开辟了一条新颖的电解质设计路线。