4.6 Article

Raman and FTIR spectroscopic study of LixFePO4 (0 <= x <= 1)

Journal

JOURNAL OF THE ELECTROCHEMICAL SOCIETY
Volume 151, Issue 7, Pages A1032-A1038

Publisher

ELECTROCHEMICAL SOC INC
DOI: 10.1149/1.1756885

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A series of compounds, LixFePO4 (0 less than or equal to x less than or equal to 1), was prepared by chemical delithiation and investigated with Fourier transform infrared (FTIR) and Raman spectroscopy for the first time. Sample homogeneity with respect to Fe and P was analyzed with an electron microprobe. The imaging capabilities of the electron microprobe reveal larger-sized particles (10-20 mum diam) and fine intergranular particles (less than or equal to1 mum). Elemental analysis with the electron microprobe demonstrates that the LixFePO4 particles are relatively homogeneous. Thus, the electron microprobe may be used in conjunction with other instruments that are more commonly used to investigate particle morphology, such as scanning or transmission electron microscopes. Isotopic substitution experiments show that the symmetric and antisymmetric bending vibrations of the PO3- anion are highly mixed with Li+ translatory vibrations. Consequently, no band in the IR spectrum of LiFePO4 may be assigned solely as a lithium ion cage mode. Spectroscopic measurements of the LixFePO4 series demonstrate that the intramolecular modes of PO43- are particularly sensitive to the extraction of Li+ ions from LiFePO4 and the accompanying oxidation of Fe2+ to Fe3+. Spectroscopic data suggest that the PO43- effective force constants (band frequencies), dipole moment derivatives (FTIR intensities), and polarizability derivatives (Raman intensities) change as LiFePO4 is converted into FePO4. Together, the data strongly support the two-phase shell model of LiFePO4 delithiation. (C) 2004 The Electrochemical Society.

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