Combined jet relaxation and quantum chemical study of the pairing preferences of ethanol

2005 | journal article. A publication with affiliation to the University of Göttingen.

Jump to: Cite & Linked | Documents & Media | Details | Version history

Cite this publication

​Combined jet relaxation and quantum chemical study of the pairing preferences of ethanol​
Emmeluth, C.; Dyczmons, V.; Kinzel, T.; Botschwina, P.; Suhm, M. A.   & Yanez, M.​ (2005) 
Physical Chemistry Chemical Physics7(5) pp. 991​-997​.​ DOI: https://doi.org/10.1039/b417870j 

Documents & Media

License

GRO License GRO License

Details

Authors
Emmeluth, C.; Dyczmons, Volker; Kinzel, T.; Botschwina, Peter; Suhm, Martin A. ; Yanez, M.
Abstract
The subtle trans - gauche equilibrium in the ethanol molecule is affected by hydrogen bonding. The resulting conformational complexity in ethanol dimer manifests itself in three hydrogen-bonded OH stretching bands of comparable infrared intensity in supersonic helium expansions. Admixture of argon or nitrogen promotes collisional relaxation and is shown to enhance the lowest frequency transition. Global and local harmonic frequency shift calculations at MP2 level indicate that this transition is due to a gauche - gauche dimer, but the predictions are sensitive to basis set and correlation level. Energetically, the homochiral gauche - gauche dimer is predicted to be the most stable ethanol dimer conformation. The harmonic MP2 predictions are corroborated by perturbative anharmonicity contributions and CCSD(T) energies. Thus, a consistent picture of the subtle hydrogen bond energetics and vibrational dynamics of the ethanol dimer is starting to emerge for the first time.
Issue Date
2005
Status
published
Publisher
Royal Soc Chemistry
Journal
Physical Chemistry Chemical Physics 
Organization
Institut für Physikalische Chemie 
ISSN
1463-9076

Reference

Citations


Social Media