论文标题

抑制锂金属阳极的化学腐蚀

Suppressing chemical corrosions of lithium metal anodes

论文作者

Lu, Bingyu, Li, Weikang, Cheng, Diyi, Ceja, Miguel, Bao, Wurigumula, Fang, Chengcheng, Meng, Ying Shirley

论文摘要

锂(LI)金属阳极对于下一代高能密度可充电LI金属电池至关重要。尽管已经进行了广泛的研究以延长Li金属电池的循环寿命,但尚未对液体电解质中Li金属的化学腐蚀的日历寿命进行数量了解。在这里,通过梳理滴定气相色谱法(TGC)方法和低温聚焦离子束(Cryo-FIB),我们在各种液体电解质系统中建立了化学腐蚀速率与电化学沉积的LI形态之间的定量关系。我们确定腐蚀速率由沉积LI的孔隙率支配。沉积Li的孔隙率越大,腐蚀速率的越快。我们进一步提出了减轻LI上化学腐蚀的策略,从而延长了Li金属电池的日历寿命。通过严格控制LI Plating期间的堆叠压力,可以实现具有超低孔隙率的LI沉积物,从而抑制每天0.08%的腐蚀速率,而高孔隙度LI的每天1.71%。

The lithium (Li) metal anode is essential for next generation high energy density rechargeable Li metal batteries. Although extensive studies have been performed to prolong the cycle life of Li metal batteries, the calendar life, which associates with chemical corrosion of Li metal in liquid electrolytes, has not been quantitatively understood. Here, by combing the Titration Gas Chromatography (TGC) method and Cryogenic Focused Ion Beam (Cryo-FIB), we established a quantitative relationship between the chemical corrosion rate and electrochemically deposited Li morphology in various liquid electrolyte systems. We identified that the corrosion rate is dominated by the porosity of the deposited Li. The larger the porosity of deposited Li has, the faster the corrosion rate will be. We further proposed strategies to mitigate the chemical corrosion on Li thus to extend the calendar life of Li metal batteries. By strictly controlling the stacking pressure during Li plating, Li deposits with ultra-low porosity can be achieved, suppressing the corrosion rate to 0.08% per day compared with 1.71% per day of the high-porosity Li.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源