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Infrared and Raman study of amorphous V2O5

✍ Scribed by C. Sanchez; J. Livage; G. Lucazeau


Publisher
John Wiley and Sons
Year
1982
Tongue
English
Weight
463 KB
Volume
12
Category
Article
ISSN
0377-0486

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✦ Synopsis


Amorphous V205 can be obtained by cooling from the melt. This amorphous oxide is very sensitive to water vapour and can even be dissolved in water to give a vanadium pentoxide gel. The hydration process has been followed by infrared and Raman spectroscopy between 20 and 4000 cm-l. Short-range order in the amorphous oxide appears to be almost the same as in orthorhombic VzOs. The amorphous phase could even be described as made of small crystallites about 100 d in diameter. The structure of amorphous VZO5 does not seem to be modified by water adsorption, at Least during the first stages of the hydration process. However, a drastic modification occurs when enough water is added to give a gel. A general shift to lower frequencies is observed, indicating a weakening of the V -0 bonds, presumably associated with the formation of new V-OH2 bonds. Two different water species have been identified, one of which seems to be almost free of hydrogen bonding. Short-range order in the gels seems to be quite well defined and the spectra could be interpreted either in terms of crystallites, as in amorphous V,O,, or in terms of molecular (or macromolecular) species,containing V205, (H20), groups.


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Rotational spectra of the r P 0 and r R 0 b-type subbands of N 2 O 5 for both internal rotor states were recorded using a pulsed-nozzle Fourier-transform microwave spectrometer. The present measurements extend our previous results on N 2 O 5 which were confined to the r R 0 , r R 1 , r Q 1 , and r P