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Quantifying microstructural dynamics and electrochemical activity of graphite and silicon-graphite lithium ion battery anodes

机译:量化石墨和硅石墨锂离子电池负极的微观结构动力学和电化学活性

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摘要

Despite numerous studies presenting advances in tomographic imaging and analysis of lithium ion batteries, graphite-based anodes have received little attention. Weak X-ray attenuation of graphite and, as a result, poor contrast between graphite and the other carbon-based components in an electrode pore space renders data analysis challenging. Here we demonstrate operando tomography of weakly attenuating electrodes during electrochemical (de)lithiation. We use propagation-based phase contrast tomography to facilitate the differentiation between weakly attenuating materials and apply digital volume correlation to capture the dynamics of the electrodes during operation. After validating that we can quantify the local electrochemical activity and microstructural changes throughout graphite electrodes, we apply our technique to graphite-silicon composite electrodes. We show that microstructural changes that occur during (de)lithiation of a pure graphite electrode are of the same order of magnitude as spatial inhomogeneities within it, while strain in composite electrodes is locally pronounced and introduces significant microstructural changes.
机译:尽管有大量研究提出了锂离子电池的层析成像和分析方面的进展,但石墨基负极却很少受到关注。石墨的X射线衰减弱,结果,电极孔隙空间中的石墨与其他碳基成分之间的对比度差,使得数据分析具有挑战性。在这里,我们展示了弱衰减电极在电化学(去锂化)过程中的操作层析成像。我们使用基于传播的相衬层析成像技术来促进弱衰减材料之间的区别,并应用数字体积相关性来捕获操作过程中电极的动态。在确认我们可以量化整个石墨电极的局部电化学活性和微观结构变化后,我们将我们的技术应用于石墨-硅复合电极。我们表明,在纯石墨电极的(去)锂化过程中发生的微结构变化与其中的空间不均匀性具有相同的数量级,而复合电极中的应变局部显着,并引入了显着的微结构变化。

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