材料科学
体积膨胀
锂(药物)
自然资源经济学
环境科学
冶金
经济
心理学
医学
精神科
内科学
作者
Laura C. Merrill,Robert G. Craig,Damion P. Cummings,Julia Deitz
出处
期刊:Batteries
[Multidisciplinary Digital Publishing Institute]
日期:2025-06-29
卷期号:11 (7): 249-249
标识
DOI:10.3390/batteries11070249
摘要
The widespread implementation of next-generation Li metal anodes is limited, in part, due to the formation of dendritic and/or mossy electrodeposits during cycling. These morphologies can lead to battery failure due to the formation of short circuits and significant volumetric expansion at the anode. One strategy to control the electrodeposition of Li metal is to use lithiophilic materials at the anode. Here, we evaluate the impact of Ag and Au on the early stages of Li metal electrodeposition and cycling. The alloying substrates decrease the voltage for Li reduction and improve Li wetting/adhesion. We probe volumetric expansion directly through dilatometry measurements and find that the degree of volumetric expansion is less when lithium is cycled on an alloying substrate compared to a non-alloying substrate (Cu). Dilatometry experiments reveal that Au has the least amount of volumetric expansion and coin cell cycling experiments indicate that Ag yields more stable cycling compared to Au or Cu. The evaluation of in situ cross-sectional images of cycled coin cells shows that Ag has the lowest volumetric expansion in a coin cell format.
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