Liu Zhiyuan, Sun Luyang, Liu Xianyu, Lu Qiongqiong
School of Bailie Mechanical Engineering, Lanzhou City University, Lanzhou, 730070, China.
Institute of Materials, Henan Key Laboratory of Advanced Conductor Materials, Henan Academy of Sciences, Zhengzhou, 450001, China.
Chemistry. 2024 Oct 28;30(60):e202402032. doi: 10.1002/chem.202402032. Epub 2024 Oct 16.
Lithium-sulfur (Li-S) batteries are considered as a most promising rechargeable lithium metal batteries because of their high energy density and low cost. However, the Li-S batteries mainly suffer the capacity decay issue caused by the shutting effect of lithium polysulfides and the safety issues arising from the Li dendrites formation. This review outlines the current issues of Li-S batteries. Furthermore, we comprehensively summarized the challenges encountered by Li anode in Li-S batteries, such as the heterogeneous deposition of the Li anode, the unstable solid electrolyte interface (SEI) layer, and volume expansion. Moreover, research progresses in the stabilization strategies of Li anodes (physical approaches, optimization of electrolyte, surface protection layer, and design of current collector) is discussed in detail. Lastly, the remaining challenges and future research directions of Li metal anode stabilization in Li-S batteries are also present.
锂硫(Li-S)电池因其高能量密度和低成本而被认为是最具前景的可充电锂金属电池。然而,锂硫电池主要面临由多硫化锂的穿梭效应导致的容量衰减问题以及锂枝晶形成引发的安全问题。本综述概述了锂硫电池当前存在的问题。此外,我们全面总结了锂硫电池中锂负极所面临的挑战,例如锂负极的不均匀沉积、不稳定的固体电解质界面(SEI)层以及体积膨胀。此外,还详细讨论了锂负极稳定化策略(物理方法、电解质优化、表面保护层以及集流体设计)的研究进展。最后,也阐述了锂硫电池中锂金属负极稳定化方面尚存的挑战和未来的研究方向。