Literature DB >> 24963724

Alcohol dimers--how much diagonal OH anharmonicity?

Franz Kollipost1, Kim Papendorf, Yu-Fang Lee, Yuan-Pern Lee, Martin A Suhm.   

Abstract

The OH bond of methanol, ethanol and t-butyl alcohol becomes more anharmonic upon hydrogen bonding and the infrared intensity ratio between the overtone and the fundamental transition of the bridging OH stretching mode decreases drastically. FTIR spectroscopy of supersonic slit jet expansions allows to quantify these effects for isolated alcohol dimers, enabling a direct comparison to anharmonic vibrational predictions. The diagonal anharmonicity increase amounts to 15-18%, growing with increasing alkyl substitution. The overtone/fundamental IR intensity ratio, which is on the order of 0.1 or more for isolated alcohols, drops to 0.004-0.001 in the hydrogen-bonded OH group, making overtone detection very challenging. Again, alkyl substitution enhances the intensity suppression. Vibrational second order perturbation theory appears to capture these effects in a semiquantitative way. Harmonic quantum chemistry predictions for the hydrogen bond-induced OH stretching frequency shift (the widely used infrared signature of hydrogen bonding) are insufficient, and diagonal anharmonicity corrections from experiment make the agreement between theory and experiment worse. Inclusion of anharmonic cross terms between hydrogen bond modes and the OH stretching mode is thus essential, as is a high level electronic structure theory. The isolated molecule results are compared to matrix isolation data, complementing earlier studies in N2 and Ar by the more weakly interacting Ne and p-H2 matrices. Matrix effects on the hydrogen bond donor vibration are quantified.

Entities:  

Year:  2014        PMID: 24963724     DOI: 10.1039/c4cp01418a

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  3 in total

1.  Activity coefficients of binary methanol alcohol mixtures from cluster weighting.

Authors:  Gwydyon Marchelli; J Ingenmey; B Kirchner
Journal:  ChemistryOpen       Date:  2020-07-23       Impact factor: 2.911

2.  Hydrogen Delocalization in an Asymmetric Biomolecule: The Curious Case of Alpha-Fenchol.

Authors:  Robert Medel; Johann R Springborn; Deborah L Crittenden; Martin A Suhm
Journal:  Molecules       Date:  2021-12-24       Impact factor: 4.411

3.  Soft hydrogen bonds to alkenes: the methanol-ethene prototype under experimental and theoretical scrutiny.

Authors:  Matthias Heger; Ricardo A Mata; Martin A Suhm
Journal:  Chem Sci       Date:  2015-05-11       Impact factor: 9.825

  3 in total

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