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Multivariate Curve Resolution Analysis for Interpretation of Dynamic Cu K-Edge X-ray Absorption Spectroscopy Spectra for a Cu Doped V_(2)O_(5) Lithium Battery

机译:解释Cu掺杂V_(2)O_(5)锂电池的动态Cu K边缘X射线吸收光谱的多元曲线分辨率分析

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Vanadium pentoxide materials prepared through sol-gel processes act as excellent intercalation hosts for lithium as well as polyvalent cations. A chemometric approach has been applied to study the X-ray absorption near-edge structure (XANES) evolution during in situ scanning of the Cu_(0.1)V_(2)O_(5) xerogel/Li ions battery. Among the more common techniques, the fixed size windows evolving factor analysis (FSWEFA) permits the number of species involved in the experiment to be determined and the range of existence of each of them. This result, combined with the constraints of the invariance of the total concentration and non-negativity of both concentrations and spectra, enabled us to obtain the spectra of the pure components using a multivariate curve resolution refined by an alternate least squares fitting procedure. This allowed the normalized concentration profile to be understood. This data treatment evidenced the occurrence, for the first time, of three species during the battery charging. This fact finds confirmation by comparison of the pure spectra with the experimental ones. Extended X-ray absorption fine structure (EXAFS) analysis confirms the occurrence of three different chemical environments of Cu during battery charging.
机译:通过溶胶-凝胶法制备的五氧化二钒材料是锂以及多价阳离子的极佳嵌入主体。化学计量学方法已被应用于研究在原位扫描Cu_(0.1)V_(2)O_(5)凝胶/锂离子电池过程中X射线吸收近边缘结构(XANES)的演化。在更常见的技术中,固定大小窗口进化因子分析(FSWEFA)可以确定实验中涉及的物种数量以及每种物种的存在范围。该结果与总浓度不变性以及浓度和光谱的非负性的约束条件相结合,使我们能够使用通过交替最小二乘拟合程序改进的多元曲线分辨率来获得纯组分的光谱。这使得可以理解归一化浓度曲线。这种数据处理首次证明了在电池充电过程中出现了三种。通过将纯光谱与实验光谱进行比较,可以发现这一事实。扩展的X射线吸收精细结构(EXAFS)分析证实了电池充电过程中会出现三种不同的铜化学环境。

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