Molecular structure, conformational preferences and vibrational analysis of 2-hydroxystyrene: A computational and spectroscopic research

作者:Garcia Gregorio; Navarro Amparo; Manuel Granadino Roldan Jose; Garzon Andres; Pena Ruiz Tomas; Paz Fernandez Liencres Maria; Melguizo Manuel; Penas Antonio; Pongor Gabor; Eori Janos; Fernandez Gomez Manuel*
来源:Chemical Physics, 2010, 374(1-3): 62-76.
DOI:10.1016/j.chemphys.2010.06.014

摘要

The molecular structure of 2-hydroxy-styrene has been investigated at DFT (B3LYP, mPW1PW91) and MP2 levels with an assortment of Pople's and Dunning's basis sets within the isolated molecule approximation. The presence of intramolecular hydrogen bonds has been theoretically characterized through a topological analysis of the electron density according to the Atom-In-Molecules, AIM, theory. The conformational equilibrium has been pursued by means of an analysis of the hydroxyl-phenyl and vinyl-phenyl internal rotation barriers. This analysis also allowed getting an insight into the effects governing the torsion barriers and the preferred conformations. A twofold scheme has been used for this goal, i.e. the total electronic energy changes and the natural bonding orbital, NBO, schemes. The vibrational spectrum was recorded and then calculated at DFT-B3LYP/6-31G* and cc-pVTZ levels. Two scaling methods, SQMFF and linear scaling, have been applied on the theoretical spectrum in order to analyse the experimental one. The results point out that at least three different conformers coexist at room temperature.

  • 出版日期2010-8-23