Intra- vs. intermolecular hydrogen bonding: dimers of alpha-hydroxyesters with methanol

2006 | journal article. A publication with affiliation to the University of Göttingen.

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​Intra- vs. intermolecular hydrogen bonding: dimers of alpha-hydroxyesters with methanol​
Borho, N.; Suhm, M. A. ; Le Barbu-Debus, K. & Zehnacker, A.​ (2006) 
Physical Chemistry Chemical Physics8(38) pp. 4449​-4460​.​ DOI: https://doi.org/10.1039/b609725a 

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Authors
Borho, Nicole; Suhm, Martin A. ; Le Barbu-Debus, Katia; Zehnacker, Anne
Abstract
Intermolecular hydrogen bonding competes with an intramolecular hydrogen bond when methanol binds to an alpha-hydroxyester. Disruption of the intramolecular OH center dot center dot center dot O=C contact in favour of a cooperative OH center dot center dot center dot OH center dot center dot center dot O=C sequence is evidenced by FTIR spectroscopy for the addition of methanol to the esters methyl glycolate, methyl lactate and methyl alpha-hydroxyisobutyrate in seeded supersonic jet expansions. Comparison of the OH stretching modes with quantum-chemical harmonic frequency calculations and O-18 labelling of methanol unambiguously prove the insertion of methanol into the intramolecular hydrogen bond. This is in marked contrast to UV/IR hole burning studies of the homologous system methyl lactate: (+/-)-2-naphthyl-1-ethanol, where only addition complexes were found and the intramolecular hydrogen bond was conserved. This switch in hydrogen bond pattern from aliphatic to aromatic heterodimers is thought to reflect not only a kinetic propensity but also a thermodynamic preference for addition complexes when dispersion forces become more important in aromatic systems.
Issue Date
2006
Journal
Physical Chemistry Chemical Physics 
Organization
Institut für Physikalische Chemie 
ISSN
1463-9076

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