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In-Situ Electrochemical Dilatometry Study for Understanding Volume Changes of the Graphite Electrodes for Lithium-Ion Battery

机译:原位电化学稀释测定研究了解锂离子电池石墨电极的体积变化

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In-situ electrochemical dilatometry is applied as an analytical technique to investigate the effect of both solid electrolyte interface (SEI) formation and the microstructure of the electrode on the dilation behavior of the graphite electrodes during lithium ion intercalation at the same time. It was found that the dilation and contraction behavior of the graphite electrode was dependent on the microstructure of the graphite electrode. The relationship between the microstructure, such as preferred orientation of graphite particles and the pore structure, and the volume changes of the graphite electrode were investigated by half-cell type in-situ electrochemical dilatometer during cycling. Dilation behavior of graphite electrodes monitored by in-situ dilatometer clearly showed the volume changes of the graphite electrodes induced by Li ion intercalation/de-intercalation as well as the SEI layer formation, and how the microstructure of the electrodes affects their volume expansion upon lithium ion intercalation. It was also found that differential dilation plots of the graphite electrodes upon lithiation and delithiation gave us more detailed information of dilation and contraction behaviors with respect to the amount of Li ion intercalated into graphite.
机译:原位电化学扩张物作为分析技术应用,以研究固体电解质界面(SEI)形成和电极的微观结构同时在锂离子嵌入期间石墨电极的扩张行为的影响。发现石墨电极的扩张和收缩行为取决于石墨电极的微观结构。在循环期间,通过半细胞类型在原位电化学膨胀计研究了微观结构与孔隙结构的优选取向,以及石墨电极的体积变化的关系。通过原位膨胀计监测的石墨电极的扩张行为清楚地显示了Li离子插入/去嵌段以及SEI层形成的石墨电极的体积变化,以及电极的微观结构如何影响它们在锂时的体积膨胀离子嵌入。还发现石墨电极在锂化和脱水上的差分扩张图给了我们更详细的扩张和收缩行为的信息,相对于锂离子嵌入到石墨中的量。

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