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Multimodal Nanoscale Tomographic Imaging for Battery Electrodes

机译:电池电极的多模式纳米级断层成像

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Abstract Accurate representations of the 3D structure within a lithium‐ion battery are key to understanding performance limitations. However, obtaining exact reconstructions of electrodes, where the active particles, the carbon black and polymeric binder domain, and the pore space are visualized is challenging. Here, it is shown that multimodal imaging can be used to overcome this challenge. High‐resolution ptychographic X‐ray computed tomography are combined with lower resolution but higher contrast transmission X‐ray tomographic microscopy to obtain 3D reconstructions of pristine and cycled graphite‐silicon composite electrodes. This cross‐correlation enables quantitative analysis of the surface of active particles, including the heterogeneity of carbon‐black and binder domain and solid‐electrolyte interphase coverage. Capturing the active particles as well as the carbon black‐binder domain allows using these segmented structures for electrochemical simulations to highlight the influence of the particle embedding on local state of charge heterogeneities.
机译:摘要锂离子电池内3D结构的准确表示是了解性能限制的关键。然而,获得电极的精确重建,其中活性颗粒,炭黑和聚合物粘合剂结构域和孔隙空间被视为具有挑战性。在这里,示出了多峰成像可用于克服这种挑战。高分辨率Ptychography X射线计算机断层扫描与较低分辨率相结合,但更高的对比度传输X射线断层显微镜,以获得原始和循环石墨硅复合电极的3D重建。该互相关使得能够进行活性颗粒表面的定量分析,包括炭黑和粘合剂结构域的异质性和固体电解质间覆盖。捕获活性颗粒以及炭黑粘合剂结构域允许使用这些分段结构进行电化学模拟,以突出颗粒嵌入对局部电荷异​​质状态的影响。

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