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A combined spectroscopic and theoretical study of propofol center dot (H2O)(3)

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Abstract

Propofol (2,6-di-isopropylphenol) is probably the most widely used general anesthetic. Previous studies focused on its complexes containing 1 and 2 water molecules. In this work, propofol clusters containing three water molecules were formed using supersonic expansions and probed by means of a number of mass-resolved laser spectroscopic techniques. The 2-color REMPI spectrum of propofol center dot (H2O)(3) contains contributions from at least two conformational isomers, as demonstrated by UV/UV hole burning. Using the infrared IR/UV double resonance technique, the IR spectrum of each isomer was obtained both in ground and first excited electronic states and interpreted in the light of density functional theory (DFT) calculations at M06-2X/6-311++G(d,p) and B3LYP/6-311++G(d,p) levels. The spectral analysis reveals that in both isomers the water molecules are forming cyclic hydrogen bond networks around propofol's OH moiety. Furthermore, some evidences point to the existence of isomerization processes, due to a complicated conformational landscape and the existence of multiple paths with low energy barriers connecting the different conformers. Such processes are discussed with the aid of DFT calculations. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.4743960]

Year of Publication
2012
Journal
Journal of Chemical Physics
Volume
137
Issue
7
Number of Pages
074303
Date Published
Aug
Type of Article
Article
ISBN Number
0021-9606
DOI
PId
87147cf4d12b5a9c57e329d5f1bb66ca
Alternate Journal
J. Chem. Phys.
Journal Article
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