首页> 外文期刊>Journal of physical chemistry letters >Operando Confocal Microscopy for Dynamic Changes of Li+ Ion Conduction Path in Graphite Electrode Layers of All-Solid-State Batteries
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Operando Confocal Microscopy for Dynamic Changes of Li+ Ion Conduction Path in Graphite Electrode Layers of All-Solid-State Batteries

机译:用于全固态电池石墨电极层LI +离子传导路径的动态变化的操作寿共聚焦显微镜

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摘要

The dynamic changes of ionic conduction path in the cross-sectional graphite composite electrodes of bulk-type all-solid-state lithium batteries have been monitored using operando confocal microscopic observations for color changes of graphite in response to their stage structures. The ionic conduction path decreased in the cross-sectional direction as cycle numbers increased, with simultaneous capacity degradation. The local reactivity of lithiation and delithiation was evaluated by image analysis considering state-of-charge (SOC) values. Electrode thickness changes were examined from the confocal microscope images obtained in the operando observations. The results revealed that voids and cracks were formed during cycle tests and that the thickness gradually increased. These cracks and voids were one of the main contributors to the limitation of ionic conduction paths in the depth direction. Operando microscopic observation and subsequent image analysis elucidated not only the morphological changes of active materials but also the differences in local SOC changes in the electrode.
机译:使用Operando共聚焦微观观察来监测散装型全固态锂电池横截面石墨复合电极的离子传导路径的动态变化,用于响应其舞台结构的石墨的颜色变化。随着循环数增加,离子传导路径在横截面方向上减小,具有同时的容量劣化。通过考虑充电状态(SOC)值的图像分析评估锂化和脱脂的局部反应性。从操作数观察中获得的共聚焦显微镜图像检查电极厚度变化。结果表明,在循环试验期间形成空隙和裂缝,并且厚度逐渐增加。这些裂缝和空隙是主要贡献的主要因素之一,限制深度方向的离子传导路径。 Operando显微镜观察和随后的图像分析不仅阐明了活性材料的形态变化,而且阐明了电极中局部SOC变化的差异。

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