Lee Hongkyung, Chen Shuru, Ren Xiaodi, Martinez Abraham, Shutthanandan Vaithiyalingam, Vijayakumar Murugesan, Han Kee Sung, Li Qiuyan, Liu Jun, Xu Wu, Zhang Ji-Guang
Energy and Environment Directorate, Pacific Northwest National Laboratory, 902 Battelle Boulevard. Richland, Washington, 99354, USA.
Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, 3335 Innovation Boulevard, Richland, Washington, 99354, USA.
ChemSusChem. 2018 Nov 9;11(21):3821-3828. doi: 10.1002/cssc.201801445. Epub 2018 Oct 11.
The very high specific capacity of Li metal makes it an ideal anode for high-energy batteries. However, Li dendrite growth and the formation of isolated (or "dead") Li during repeated Li plating/stripping processes leads to a low coulombic efficiency (CE). In this work, we discovered, for the first time, that electrode edge effects play an important role in the failure of Li-metal batteries. The dead Li formed on the edge of Cu substrate was systematically investigated through SEM, energy-dispersive X-ray (EDX) spectroscopy, and 2D X-ray photoelectron spectroscopy (XPS). To minimize the Li loss at the edge of the Cu exposed to pressure-free space, a modified Li∥Cu cell configuration with a Cu electrode smaller than Li metal is preferred. It was clearly demonstrated that using an electrode configuration with a minimal open space or pressure-free space across electrodes can reduce accumulation of dead Li during cycling and increase Li CE. This phenomenon was also verified in Li-metal batteries (Li∥LiNi Mn Co O ) and should be considered in the design of practical Li-metal batteries.
锂金属极高的比容量使其成为高能电池的理想阳极。然而,在反复的锂电镀/剥离过程中,锂枝晶生长以及孤立(或“死”)锂的形成导致库仑效率(CE)较低。在这项工作中,我们首次发现电极边缘效应在锂金属电池失效中起重要作用。通过扫描电子显微镜(SEM)、能量色散X射线(EDX)光谱和二维X射线光电子能谱(XPS)对铜基板边缘形成的死锂进行了系统研究。为了使暴露于无压空间的铜边缘处的锂损失最小化,优选使用铜电极小于锂金属的改进型锂∥铜电池配置。结果清楚地表明,使用电极间具有最小开放空间或无压空间的电极配置可以减少循环过程中死锂的积累并提高锂库仑效率。这种现象在锂金属电池(锂∥锂镍锰钴氧化物)中也得到了验证,在实际锂金属电池的设计中应予以考虑。