4.5 Article

Anharmonicity and hydrogen bonding I. A near-infrared study of methanol trapped in nitrogen and argon matrices

Journal

CHEMICAL PHYSICS
Volume 264, Issue 2, Pages 221-234

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/S0301-0104(00)00397-9

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The infrared spectra of six isotopic species of methanol trapped in solid nitrogen and argon were measured in the domain 7300-300 cm(-1). Among the various combinations and overtones observed, the 2v(1) (OH or OD stretching), 2v(6) (OH or OD bending) and v(1) + v(6) transitions were examined as a function of the concentration and compared to the yl and v(6) fundamentals. Most of the bands of monomer and dimer were identified. For aggregates larger than the dimer no absorption assignable to 2v(1) was detected, which. taking into account the accuracy of the intensity measurements, leads to a v(1)/2v(1) intensity ratio greater than 1000 for these polymers, to be compared to approximate to 20 for the monomer and 400 for the proton donor molecule of the dimer. An opposite situation is encountered for the bending mode. the v(6)/2v(6) intensity ratio decreasing from monomer to polymers, possibly because of a Fermi resonance between 2v(6) and vl whose frequencies get closer in case of aggregation. For the v(1) + v(6) combination the effects of hydrogen bonding are not as dramatic as in the case of the overtones. From the frequencies and relative intensities some anharmonicity parameters were deduced. Noticeable differences between the spectra of the proton donor and of the proton acceptor molecules of the dimer are explained by changes in the dipole moment function upon H-bond formation. (C) 2001 Elsevier Science B.V. All rights reserved.

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