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Manufacturing of advanced Li(NiMnCo)O_2 electrodes for lithium-ion batteries

机译:锂离子电池高级Li(NiMnCo)O_2电极的制造

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Lithium-ion batteries require an increase in cell life-time as well as an improvement in cycle stability in order to be used as energy storage systems, e.g. for stationary devices or electric vehicles. Nowadays, several cathode materials such as Li(NiMnCo)O_2 (NMC) are under intense investigation to enhanced cell cycling behavior by simultaneously providing reasonable costs. Previous studies have shown that processing of three-dimensional (3D) micro-features in electrodes using nanosecond laser radiation further increases the active surface area and therefore, the lithium-ion diffusion cell kinetics. Within this study, NMC cathodes were prepared by tape-casting and laser-structured using nanosecond laser radiation. Furthermore, laser-induced breakdown spectroscopy (LIBS) was used in a first experimental attempt to analyze the lithium distribution in unstructured NMC cathodes at different state-of-charges (SOC). LIBS will be applied to laser-structured cathodes in order to investigate the lithium distribution at different SOC. The results will be compared to those obtained for unstructured electrodes to examine advantages of 3D micro-structures with respect to lithium-ion diffusion kinetics.
机译:锂离子电池需要增加电池寿命,并需要改善循环稳定性,才能用作能量存储系统,例如电池。用于固定设备或电动汽车。如今,几种正极材料(如Li(NiMnCo)O_2(NMC))正在受到广泛研究,以通过同时提供合理的成本来增强电池的循环性能。先前的研究表明,使用纳秒激光辐射在电极中处理三维(3D)微观特征会进一步增加有效表面积,因此会增加锂离子扩散池的动力学。在这项研究中,NMC阴极通过流延制备,并使用纳秒激光辐射进行激光结构化。此外,在首次实验尝试中,使用激光诱导击穿光谱法(LIBS)分析了不同电荷状态(SOC)下非结构化NMC阴极中的锂分布。 LIBS将应用于激光结构的阴极,以研究不同SOC下的锂分布。将结果与非结构化电极获得的结果进行比较,以检验3D微观结构在锂离子扩散动力学方面的优势。

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