Aromatic embedding wins over classical hydrogen bonding - a multi-spectroscopic approach for the diphenyl ether-methanol complex

2016 | journal article. A publication with affiliation to the University 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 Physics18(37) pp. 25975​-25983​.​ DOI: https://doi.org/10.1039/c6cp03557d 

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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

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