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>Vibrational spectroscopy of molecular constituents of onehyphen;dimensional organic conductors. Tetrathiofulvalene (TTF), TTF+, and (TTF+)2dimer
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Vibrational spectroscopy of molecular constituents of onehyphen;dimensional organic conductors. Tetrathiofulvalene (TTF), TTF+, and (TTF+)2dimer
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机译:Vibrational spectroscopy of molecular constituents of onehyphen;dimensional organic conductors. Tetrathiofulvalene (TTF), TTF+, and (TTF+)2dimer
An extensive vibrational assignment of TTF and TTFhyphen;d4is achieved, improving the previously reported one through the use of polarized infrared spectra of single crystals of the monoclinic form. Infrared spectra of the monoclinic and triclinic forms are compared and the different crystal field effects discussed. Powder Raman and infrared spectra of (TTF)Br1.0and (TTFhyphen;d4)Br1.0, Raman depolarization ratios and infrared spectra of (TTF)ClO4and (TTFhyphen;d4)ClO4solutions are reported. The assignment of theag,b1u,b2u, andb3ufundamental modes of (TTF)+and (TTFhyphen;d4)+radicals allows the identification of most of the relevant frequency shifts following the ionization of the TTF structure. The possible use of the ionization shifts for the study of the electronic charge distribution in the conducting TTF systems is considered. The parallel investigation of the concentration effects on the visible and infrared absorption spectra of TTF+in solution let us to identify anomalous infrared absorptions associated with the formation of (TTF+)2dimer. They are attributable to an intensity borrowing from the charge transfer band due to the electronndash;molecular vibration (endash;mv) interaction and their identification opens the way to an experimental evaluation of the endash;mv coupling constants of TTF.
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