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首页> 外文期刊>Journal of power sources >Multi-scale 3D investigations of a commercial 18650 Li-ion battery with correlative electron- and X-ray microscopy
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Multi-scale 3D investigations of a commercial 18650 Li-ion battery with correlative electron- and X-ray microscopy

机译:使用相关的电子和X射线显微镜对商用18650锂离子电池进行多尺度3D研究

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In the present study, a commercial 18650 Li-ion cylindrical cell is investigated with non-destructive 3D X-ray microscopy across a range of length scales, beginning with a survey of the entire cell and non-destructively enlarging a smaller section. Active materials are extracted from a disassembled cell and imaging performed using a combination of sub-micron X-ray microscopy and 2D scanning-electron microscopy, which point toward the need for multi-scale analysis in order to accurately characterize the cell. Furthermore, a small section is physically isolated for 3D nano-scale X-ray microscopy, which provides a measurement of porosity and enables the effective diffusivity and 3-dimensional tortuosities to be calculated via computer simulation. Finally, the 3D X-ray microscopy data is loaded into a correlative microscopy environment, where a representative sub-surface region is identified and, subsequently, analyzed using electron microscopy and energy-dispersive X-ray spectroscopy. The results of this study elucidate the microstructural characteristics and potential degradation mechanisms of a commercial NCA battery and, further, establish a technique for extracting the Bruggeman exponent for a real-world microstructure using correlative microscopy. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本研究中,我们通过无损3D X射线显微镜在一定范围的长度范围内研究了商用18650锂离子圆柱形电池,首先是对整个电池进行调查,然后以无损方式扩大了较小的截面。从拆卸的细胞中提取活性物质,并使用亚微米X射线显微镜和2D扫描电子显微镜的组合进行成像,这表明需要进行多尺度分析才能准确表征细胞。此外,为3D纳米级X射线显微镜在物理上隔离了一小部分,从而提供了孔隙率的测量值,并可以通过计算机模拟来计算有效扩散率和3维曲折度。最后,将3D X射线显微镜数据加载到相关的显微镜环境中,在该环境中识别出代表性的次表面区域,然后使用电子显微镜和能量色散X射线光谱法进行分析。这项研究的结果阐明了商用NCA电池的微观结构特征和潜在的降解机理,并进一步建立了使用相关显微镜技术提取真实世界微观结构的Bruggeman指数的技术。 (C)2017 Elsevier B.V.保留所有权利。

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