• Title of article

    Magnetic resonance studies of chemically intercalated LixV2O5 (x=1.16 and 1.48)

  • Author/Authors

    Stallworth، نويسنده , , P.E and Johnson، نويسنده , , F.S and Greenbaum، نويسنده , , S.G and Passerini، نويسنده , , S and Flowers، نويسنده , , J and Smyrl، نويسنده , , W and Fontanella، نويسنده , , J.J، نويسنده ,

  • Issue Information
    هفته نامه با شماره پیاپی سال 2002
  • Pages
    12
  • From page
    43
  • To page
    54
  • Abstract
    7Li, 51V solid-state NMR and EPR measurements have been performed upon chemically lithiated LixV2O5, where x=1.16 and 1.48. These compounds can potentially intercalate reversibly large amounts of Li+, and therefore, are of interest primarily due to their use in battery cathodes. Still, the mechanism regarding the electron transfer from lithium metal to host V2O5 has not been settled. These compounds are known to be multi-phased; and it has been postulated that the type and amount of the various structural phases determine the reversibility of the material. Within the range 1.0<x<1.5, typically two phases are known to coexist in bronzes and electrochemically prepared LixV2O5, namely the γ- and δ-phases. In this study of chemically intercalated materials, the dominant 7Li signature is assigned to the δ-LixV2O5, whereas weaker lines appear to be those of γ-LixV2O5 and impurities. Characterization of lithium and vanadium sites and assessment of phase content is performed through deconvolution and analysis of both NMR and EPR responses.
  • Keywords
    Chemical intercalation , LixV2O5 , NMR , 7Li , 51V , Cathode material , EPR
  • Journal title
    Solid State Ionics
  • Serial Year
    2002
  • Journal title
    Solid State Ionics
  • Record number

    1713887