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Processing of Advanced Battery Materials—Laser Cutting of Pure Lithium Metal Foils

机译:先进电池材料的加工-激光切割纯锂金属箔

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Due to the increasing demand for high-performance cells for mobile applications, the standards of the performance of active materials and the efficiency of cell production strategies are rising. One promising cell technology to fulfill the increasing requirements for actual and future applications are all solid-state batteries with pure lithium metal on the anode side. The outstanding electrochemical material advantages of lithium, with its high theoretical capacity of 3860 mAh/g and low density of 0.534 g/cm 3 , can only be taken advantage of in all solid-state batteries, since, in conventional liquid electrochemical systems, the lithium dissolves with each discharging cycle. Apart from the current low stability of all solid-state separators, challenges lie in the general processing, as well as the handling and separation, of lithium metal foils. Unfortunately, lithium metal anodes cannot be separated by conventional die cutting processes in large quantities. Due to its adhesive properties and toughness, mechanical cutting tools require intensive cleaning after each cut. The presented experiments show that remote laser cutting, as a contactless and wear-free method, has the potential to separate anodes in large numbers with high-quality cutting edges.
机译:由于对用于移动应用的高性能电池的需求不断增长,活性材料的性能标准和电池生产策略的效率正在不断提高。满足实际和未来应用不断增长的要求的一种有前途的电池技术是在阳极侧使用纯锂金属的所有固态电池。锂具有出色的电化学材料优势,具有3860 mAh / g的高理论容量和0.534 g / cm 3的低密度,只能在所有固态电池中利用,因为在传统的液体电化学系统中,锂随着每个放电循环而溶解。除了目前所有固态隔板的低稳定性外,挑战还在于锂金属箔的一般加工以及处理和分离。不幸的是,锂金属阳极不能通过常规模切工艺大量分离。由于其粘合性能和韧性,机械切割工具在每次切割后都需要彻底清洁。提出的实验表明,远程激光切割作为一种无接触且无磨损的方法,具有以高质量的切割刃分离大量阳极的潜力。

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