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Folding of the Hydrogen Bond Network of H+(CH3OH)7 with Rare Gas Tagging

Authors :
Hamashima, Toru
Li, Ying-Cheng
Wu, Michael C. H.
Mizuse, Kenta
Kobayashi, Tomohiro
Fujii, Asuka
Kuo, Jer-Lai
Source :
The Journal of Physical Chemistry A. 117:101-107
Publication Year :
2012
Publisher :
American Chemical Society (ACS), 2012.

Abstract

A number of isomer structures can be formed in hydrogen-bonded clusters, reflecting the essential variety of structural motifs of hydrogen bond networks. Control of isomer distribution of a cluster is important not only in practical use for isomer-specific spectroscopy but also in understanding of isomerization processes of hydrogen bond networks. Protonated methanol clusters have relatively simple networks and they are model systems suitable to investigate isomer distribution changes. In this paper, isomer distribution of H(+)(CH(3)OH)(7) is studied by size-selective infrared spectroscopy in the OH and CH stretching vibrational region and density functional theory calculations. While the clusters produced by a supersonic jet expansion combined with electron ionization were predominantly isomers having open hydrogen bond networks such as a linear chain, the Ar or Ne attachment (so-called rare gas tagging) entirely switches the isomer structures to compactly folded ones, which are composed only of closed multiple rings. The origin of the isomer switching is discussed in terms of thermal effects and specific isomer preference.

Details

ISSN :
15205215 and 10895639
Volume :
117
Database :
OpenAIRE
Journal :
The Journal of Physical Chemistry A
Accession number :
edsair.doi.dedup.....4b66bfc69e43c02d56e69a17ff8e31c4