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Development of In situ Full Field Spectroscopic Imaging Analysis and Application on Li-ion Battery using Transmission X-ray Microscopy

机译:透速X射线显微镜的锂离子电池原位全场光谱成像分析及应用

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This paper presents the advance in spectroscopic imaging technique and analysis method from the newly developed transmission x-ray microscopy (TXM) at the beamline X8C of National Synchrotron Light Source. Through leastsquares linear combination fitting we developed on the in situ spectroscopic images, a time-dependent and spatially resolved chemical composition mapping can be obtained and quantitatively analyzed undergone chemical/electrochemical reactions. A correlation of morphological evolution, chemical state distribution changes and reaction conditions can be revealed. We successfully applied this method to study the electrochemical evolution of CuO, an anode material of Li-ion battery, during the lithiation-delitiation cycling.
机译:本文介绍了全国同步X8C的新开发的传输X射线显微镜(TXM)光谱成像技术和分析方法的进步。通过最不连续的线性组合配合,我们在原位光谱图像上开发,可以获得时间依赖性和空间分辨的化学成分映射,并定量分析化学/电化学反应。可以揭示形态学进化,化学状态分布变化和反应条件的相关性。我们在锂化 - 脱循环期间成功地应用了这种方法来研究CuO,锂离子电池阳极材料的电化学演化。

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