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首页> 外文期刊>Journal of power sources >Lithium K(1s) synchrotron NEXAFS spectra of lithium-ion battery cathode, anode and electrolyte materials
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Lithium K(1s) synchrotron NEXAFS spectra of lithium-ion battery cathode, anode and electrolyte materials

机译:锂离子电池正极,负极和电解质材料的锂K(1s)同步加速器NEXAFS光谱

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摘要

The lithium(1s) K-edge X-ray absorption spectra of lithium-ion battery relevant materials (Li metal, Li_3N, LiPF_6, LiC_6, and LiMn_(1.90)Ni_(0.10)O_4) are presented. The Li and LiC_6 spectra are discussed and compared with literature data. The Li in lithium-intercalated carbon LiC_6, typically used as anode battery electrode material, could be clearly identified in the spectrum, and a presumed purely metallic character of the Li can be ruled out based on the chemical shift observed. The Li in corresponding cathode electrode materials, LiMn_(1.90)Ni_(0.10)O_4, could be detected with near-edge X-ray absorption fine structure (NEXAFS) spectroscopy, but the strong (self-) absorption of the spinel lattice provides an obstacle for quantitative analysis. Owing to its ionic bonding, the spectrum of the electrolyte salt LiPF_6 contains a sharp π-resonance at 61.8 eV, suggesting a distinct charge transfer between Li and the hexafluorophosphate anion. In addition, LiPF_6 resembles many spectral features of LiF, making it difficult to discriminate both from each other. Residual electrolyte on anodes or cathodes poses a problem for the spectroscopic analysis of the electrodes, because its Li spectrum overshadows the spectral features of the Li in the anode or cathode. The electrolyte must be removed from electrodes prior to spectroscopic analysis.
机译:给出了锂离子电池相关材料(Li金属,Li_3N,LiPF_6,LiC_6和LiMn_(1.90)Ni_(0.10)O_4)的锂(1s)K边缘X射线吸收光谱。讨论了Li和LiC_6光谱,并与文献数据进行了比较。可以在光谱中清楚地识别通常用作阳极电池电极材料的嵌入锂的碳LiC_6中的Li,并且可以根据观察到的化学位移排除Li的纯金属特征。可以使用近边缘X射线吸收精细结构(NEXAFS)光谱法检测相应的阴极电极材料LiMn_(1.90)Ni_(0.10)O_4中的Li,但尖晶石晶格的强(自)吸收可提供定量分析的障碍。由于其离子键,电解质盐LiPF_6的光谱在61.8 eV处包含尖锐的π共振,表明Li与六氟磷酸根阴离子之间存在明显的电荷转移。此外,LiPF_6与LiF的许多光谱特征相似,因此很难将它们彼此区分开。阳极或阴极上残留的电解质给电极的光谱分析带来了问题,因为其Li光谱掩盖了阳极或阴极中Li的光谱特征。在进行光谱分析之前,必须从电极上除去电解质。

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