Halocarbons as hydrogen bond acceptors: a spectroscopic study of haloethylbenzenes (PhCH 2 CH 2 X, X = F, Cl, Br) and their hydrate clusters

The electronic spectra of 2-bromoethylbenzene and its chloro and fluoro analogues have been recorded by resonant two-photon ionisation (R2PI) spectroscopy. Anti and gauche conformers have been assigned by rotational band contour analysis and IR-UV ion depletion spectroscopy in the CH region. Hydrate...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2018-03, Vol.20 (12), p.8218-8227
Hauptverfasser: Robertson, Patrick A, Villani, Luigi, Dissanayake, Uresha L M, Duncan, Luke F, Abbott, Belinda M, Wilson, David J D, Robertson, Evan G
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Sprache:eng
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Zusammenfassung:The electronic spectra of 2-bromoethylbenzene and its chloro and fluoro analogues have been recorded by resonant two-photon ionisation (R2PI) spectroscopy. Anti and gauche conformers have been assigned by rotational band contour analysis and IR-UV ion depletion spectroscopy in the CH region. Hydrate clusters of the anti conformers have also been observed, allowing the role of halocarbons as hydrogen bond acceptors to be examined in this context. The donor OH stretch of water bound to chlorine is red-shifted by 36 cm , or 39 cm in the case of bromine. Although classed as weak H-bond acceptors, halocarbons are favourable acceptor sites compared to π systems. Fluorine stands out as the weakest H-bond acceptor amongst the halogens. Chlorine and bromine are also weak H-bond acceptors, but allow for more geometric lability, facilitating complimentary secondary interactions within the host molecule. Ab initio and DFT quantum chemical calculations, both harmonic and anharmonic, aid the structural assignments and analysis.
ISSN:1463-9076
1463-9084
DOI:10.1039/c7cp07365h