阳极
材料科学
电解质
合金
锂(药物)
电化学
化学工程
基质(水族馆)
金属
溅射
箔法
溅射沉积
沉积(地质)
薄膜
复合材料
纳米技术
冶金
电极
化学
沉积物
生物
古生物学
物理化学
内分泌学
工程类
地质学
海洋学
医学
作者
Nicolas Delaporte,Alexis Péréa,Steve Collin‐Martin,Mireille Léonard,Julie Matton,Vincent Gariépy,Hendrix Demers,Daniel Clément,Etienne Rivard,Ashok K. Vijh
出处
期刊:Meeting abstracts
日期:2023-08-28
卷期号:MA2023-01 (6): 970-970
标识
DOI:10.1149/ma2023-016970mtgabs
摘要
All-solid-state batteries (ASSB) require stable and safe Li metal anode, which needs surface preparation to increase lithium diffusion and impede the formation of dendrites. In this work, the formation of a thin LiZn layer on lithium metal using sputter deposition is reported. This method was selected due to the absence of solvents and by-products generated during the modification, for its rapidity and because the formation of the alloy is performed in a clean and controlled atmosphere. Zinc has been chosen for its low cost and high Li + ion diffusion coefficient of the corresponding LiZn alloy that is 1000 times higher than lithium. Different parameters for the Zn deposition were investigated such as the distance between the Zn target and Li foil, the effect of substrate tilt and the direct current applied to the target. Electrochemical performance of LiFePO 4 /solid polymer electrolyte/Li ASSB demonstrated the superiority of the LiZn anodes and the clear influence of deposition parameters on the durability and performance at high C-rates. Scanning electron microscopy images of the cross-sectional view of LFP/SPE/Li stackings extracted from pouch cells after cycling showed an evident migration of Zn into the bulk Li metal anode as well as the formation of AlZn nanoparticles. In addition, the formation of Li dendrites was effectively reduced for the cells made with the LiZn-protected Li metal anode. Finally, we reported an interesting observation concerning the influence of sputter conditions on the variation of morphology of Li grains.
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