Aromatic embedding wins over classical hydrogen bonding - a multi-spectroscopic approach for the diphenyl ether-methanol complex
2016 | journal article. A publication of Göttingen
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Aromatic embedding wins over classical hydrogen bonding - a multi-spectroscopic approach for the diphenyl ether-methanol complex
Medcraft, C.; Zinn, S.; Schnell, M.; Poblotzki, A.; Altnoeder, J.; Heger, M. & Suhm, M. A. et al. (2016)
Physical Chemistry Chemical Physics, 18(37) pp. 25975-25983. DOI: https://doi.org/10.1039/c6cp03557d
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Details
- Authors
- Medcraft, Chris; Zinn, Sabrina; Schnell, Melanie; Poblotzki, Anja; Altnoeder, Jonas; Heger, Matthias; Suhm, Martin A. ; Bernhard, Dominic; Stamm, Anke; Dietrich, Fabian; Gerhards, Markus
- Abstract
- Dispersion interactions are omnipresent in intermolecular interactions, but their respective contributions are difficult to predict. Aromatic ethers offer competing docking sites for alcohols: the ether oxygen as a well known hydrogen bond acceptor, but also the aromatic pi system. The interaction with two aromatic moieties in diphenyl ether can tip the balance towards pi binding. We use a multi-spectroscopic approach to study the molecular recognition, the structure and internal dynamics of the diphenyl ether-methanol complex, employing infrared, infrared-ultraviolet and microwave spectroscopy. We find that the conformer with the hydroxy group of the alcohol binding to one aromatic pi cloud and being coordinated by an aromatic C-H bond of the other phenyl group is preferred. Depending on the expansion conditions in the supersonic jet, we observe a second conformer, which exhibits a hydrogen bond to the ether oxygen and is higher in energy.
- Issue Date
- 2016
- Status
- published
- Publisher
- Royal Soc Chemistry
- Journal
- Physical Chemistry Chemical Physics
- Organization
- Institut für Physikalische Chemie
- ISSN
- 1463-9084; 1463-9076