4.5 Article

Structural modifications of LixV2O5 in a composite cathode (0 ≤ x < 2) investigated by Raman microspectrometry

期刊

JOURNAL OF RAMAN SPECTROSCOPY
卷 43, 期 1, 页码 153-160

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WILEY
DOI: 10.1002/jrs.2984

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LixV2O5; composite electrode; Raman microspectrometry; lithium battery; lithium intercalation compound

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The structural behaviour of the LixV2O5 active material in a composite electrode is determined upon lithium insertion/extraction in the 42.15 V potential range (0=x < 2) using Raman microspectrometry. For the first time, a detailed description of phase transitions occurring in the V2O5 composite electrode is provided by Raman spectroscopy, on the basis of a complete assignment of the spectra. This approach has been successful because of the knowledge of the Raman fingerprints of the chemically lithiated compounds, combined with a rigorous and systematic deconvolution of the Raman spectra obtained for the electrochemically lithiated materials. The successive emergence of a, e, d and ? phases is clearly established, as well as the a/e, e/d and d/? biphasic regions corresponding to the 3.4, 3.2 and 2.3 V potential plateaus, respectively. This study shows that Raman spectroscopy constitutes a sensitive and relevant tool to explore the emergence of the various phases governing the electrochemical properties of cathode materials for lithium batteries. Copyright (c) 2011 John Wiley & Sons, Ltd.

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