期刊论文详细信息
Macedonian Journal of Chemistry and Chemical Engineering
Theoretical model of infrared spectra of hydrogen bonds in molecular crystals of 2-thiopheneacetic acid: Fermi resonance and Davdov coupling effects.
Henryk T. Flakus1  Hafedh Abdelmoulahi2  Brahim Oujia3  Houcine Ghalla4  Noureddine Issaoui4 
[1] Institute of Chemistry, University of Silesia, 9 Szkolna Street, 40-006 Katowice,;Laboratory for Physical Chemistry of Materials, Faculty of Sciences,;Quantum Physics Laboratory, Faculty of Sciences, University of Monastir, TunisiaKing Abdul-Aziz University, Faculty of Science, Saudi Arabia;Quantum Physics Laboratory, Faculty of Sciences, University of Monastir,;
关键词: theoretical physics;    spectroscopy;    quantum physics;   
DOI  :  10.20450/mjcce.2016.1081
来源: DOAJ
【 摘 要 】

A quantum theoretical approach, within the adiabatic approximation and taking into account a strong non-adiabatic correction via the resonant exchange between the fast mode excited states of the two moieties of the dimer. The intrinsic anharmonicity of the low-frequency mode through a Morse potential, direct and indirect damping, and a selection rule breaking mechanism for forbidden transitions, is applied to reproduce the υX-H IR line shape of cyclic dimers of moderately H-bonded species in the crystalline phase. The results are used to gain an insight into the experimental spectral line shapes obtained by the transmission method. This approach fits satisfactorily the experimental line shape of 2-thiopheneacetic acid and predicts their evolution with isotopic substitution. Numerical calculations show that mixing of all these effects allows one to reproduce the main features of the experimental IR line shapes.

【 授权许可】

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