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Drying and moisture resorption behaviour of various electrode materials and separators for lithium-ion batteries

机译:锂离子电池用各种电极材料和隔膜的干燥和水分吸收行为

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摘要

The drying behaviour and water uptake of a variety of commonly used electrode materials (graphite, LiFePO4, LiMn2O4, LiCoO2, Li(NiCoMn)O-2) and separators (polyolefin, glass fibre) for lithium-ion batteries (LIBs) are investigated. The drying experiments are carried out using a coulometric Karl Fischer titrator in combination with a vaporiser. This setup leads to a highly sensitive and precise method to quantify water amounts in the microgram range in solid materials. Thereby the mass specific drying behaviour at RT and 120 degrees C is determined as well as the water resorption of the investigated materials in conditioned air atmosphere (T: 25 degrees C, RH: 40%). By extracting characteristic water detection rate curves for the investigated materials, a method is developed to predict the water detection beyond the runtime of the experiment. The results help optimising drying procedures of LIB components and thus can save time and costs. It is also shown, that water contaminations in graphite/LiFePO4 coin cells with a LiPF6 based electrolyte lead to a faster capacity fade during cycling and a significant change of the cell impedance. (C) 2017 Elsevier B.V. All rights reserved.
机译:研究了锂离子电池(LIB)的各种常用电极材料(石墨,LiFePO4,LiMn2O4,LiCoO2,Li(NiCoMn)O-2)和隔板(聚烯烃,玻璃纤维)的干燥行为和吸水率。干燥实验是使用电量法的卡尔·费休滴定仪与蒸发器结合进行的。这种设置导致了一种高度灵敏,精确的方法,可以对固体材料中微克级的水量进行定量。由此确定在RT和120℃下的质量比干燥行为以及所研究的材料在调节的空气气氛(T:25℃,RH:40%)中的吸水率。通过提取所研究材料的特征水探测速率曲线,开发了一种方法来预测超出实验运行时间的水探测。结果有助于优化LIB组件的干燥程序,从而节省时间和成本。还显示出,具有基于LiPF6的电解质的石墨/ LiFePO4硬币电池中的水污染会导致循环过程中更快的容量衰减以及电池阻抗的显着变化。 (C)2017 Elsevier B.V.保留所有权利。

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