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Combining operando synchrotron X-ray tomographic microscopy and scanning X-ray diffraction to study lithium ion batteries

机译:结合操作同步X射线断层扫描显微镜和扫描X射线衍射研究锂离子电池

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We present an operando study of a lithium ion battery combining scanning X-ray diffraction (SXRD) and synchrotron radiation X-ray tomographic microscopy (SRXTM) simultaneously for the first time. This combination of techniques facilitates the investigation of dynamic processes in lithium ion batteries containing amorphous and/or weakly attenuating active materials. While amorphous materials pose a challenge for diffraction techniques, weakly attenuating material systems pose a challenge for attenuation-contrast tomography. Furthermore, combining SXRD and SRXTM can be used to correlate processes occurring at the atomic level in the crystal lattices of the active materials with those at the scale of electrode microstructure. To demonstrate the benefits of this approach, we investigate a silicon powder electrode in lithium metal half-cell configuration. Combining SXRD and SRXTM, we are able to (i) quantify the dissolution of the metallic lithium electrode and the expansion of the silicon electrode, (ii) better understand the formation of the Li15Si4 phase, and (iii) non-invasively probe kinetic limitations within the silicon electrode. A simple model based on the 1D diffusion equation allows us to qualitatively understand the observed kinetics and demonstrates why high-capacity electrodes are more prone to inhomogeneous lithiation reactions.
机译:我们首次对锂离子电池同时进行扫描X射线衍射(SXRD)和同步辐射X射线断层显微镜(SRXTM)进行了操作研究。技术的这种组合有助于研究包含无定形和/或弱衰减活性材料的锂离子电池中的动态过程。尽管非晶材料对衍射技术提出了挑战,但弱衰减材料系统对衰减对比层析成像提出了挑战。此外,结合使用SXRD和SRXTM可以使在活性材料晶格中原子级发生的过程与在电极微结构规模上发生的过程相关。为了证明这种方法的好处,我们研究了锂金属半电池配置的硅粉电极。结合SXRD和SRXTM,我们能够(i)量化金属锂电极的溶解和硅电极的膨胀,(ii)更好地了解Li15Si4相的形成,以及(iii)非侵入式探针动力学局限性在硅电极内。一个基于一维扩散方程的简单模型使我们能够定性地了解所观察到的动力学,并证明了为什么大容量电极更容易发生不均匀的锂化反应。

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