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Far- and Mid-Infrared of Crystalline 2,2'-Bithiophene: Ab Initio Analysis and Comparison with Infrared Response
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Far- and Mid-Infrared of Crystalline 2,2'-Bithiophene: Ab Initio Analysis and Comparison with Infrared Response

Patrick Hermet, Jean-Louis Bantignies, A. Rahmani, Jean-Louis Sauvajol, M. R. Johnson et Françoise Serein-Spirau
Journal of Physical Chemistry A, Vol.109(8), p.1684-1691
02/04/2005

Résumé

Infrared intramolecular vibrations and lattice modes in the crystalline phase of 2,2'-bithiophene (2T) are investigated using the direct method combined with density functional theory (DFT)-based total energy calculations. For the first time, the far- and mid-infrared responses have been calculated from the Gamma-point modes and the Born effective charge tensors of the 2T crystalline phase. The relative good agreement between the calculated and experimental infrared spectra allows us to assign the origin of the main features of the experimental spectra, which is of particular interest in the far-infrared domain. These assignments are useful for understanding all the properties of the 2T crystalline phase in which phonon-phonon and electronphonon interactions play an important role.

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