论文标题

方法控制锂金属电池的压力控制设备

Methods pressure control apparatus for lithium metal battery

论文作者

Lu, Bingyu, Bao, Wurigumula, Yao, Weiliang, Doux, Jean-Marie, Fang, Chengcheng, Meng, Ying Shirley

论文摘要

锂(LI)金属阳极对于开发下一代高能密度电池至关重要。然而,李树突/晶须形成引起了短路的问题,循环寿命短,使锂金属无法在可充电电池中迅速使用。已经进行了许多研究,以研究如何通过使用外部堆叠力来调节电化学循环的LI生长。虽然广泛认为堆栈压力会积极影响锂电池/剥离过程,但由于压力控制设置的差异,不同作品提供的优化压力范围差异很大。在这项工作中,压力控制设备是为带有液态和固态电解质(SSE)的LI金属电池设计的。考虑到最小化细胞到细胞变异的考虑,可重复使用的分裂细胞和压力负荷电池用于测试具有高精度压力控制的电化学细胞。通过研究对LI板/剥离过程的压力效应来证明设计的设置的能力。

Lithium (Li) metal anodes are essential for developing next-generation high-energy-density batteries. However, Li dendrite/whisker formation caused short-circuiting issue and short cycle life have prevented lithium metal from being viably used in rechargeable batteries. Numerous works have been done to study how to regulate the Li growth in electrochemical cycling by using external stacking forces. While it is widely agreed that stack pressure positively affects the lithium plating/stripping process, the optimized pressure range provided by different works varies greatly because of the difference in the pressure control setup. In this work, a pressure control apparatus is designed for Li metal batteries with liquid and solid-state electrolytes (SSE). With considerations of minimizing cell to cell variation, a reusable split cell and pressure load cell are made for testing electrochemical cells with high precision pressure control. The capability of the designed setup is demonstrated by studying the pressure effect on the Li plating/stripping process.

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