Title of article :
Using experimental studies and theoretical calculations to analyze
the molecular mechanism of coumarin, p-hydroxybenzoic acid,
and cinnamic acid
Author/Authors :
Tiane-Jye Hsieh، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
Three natural products, Coumarin (1), p-hydroxybenzoic acid (2), trans-cinnamic acid (3) were isolated from the natural plant of
indigenous cinnamon and the structures including relative stereochemistry were elucidated on the basis of spectroscopic data and theoretical
calculations. Their sterochemical structures were determined by NMR spectroscopy, mass spectroscopy, and X-ray crystallography. The phydroxybenzoic
acid complex with water is reported to show the existence of two hydrogen bonds. The two hydrogen bonds are formed in the
water molecule of two hydrogen-accepting oxygen of carbonyl group of the p-hydroxybenzoic acid. The intermolecular interaction two
hydrogen bond of the model system of the water-p-hydroxybenzoic acid was investigated. An experimental study and a theoretical analysis
using the B3LYP/6-31G* method in the GAUSSIAN-03 package program were conducted on the three natural products. The theoretical results
are supplemented by experimental data. Optimal geometric structures of three compounds were also determined. The calculated molecular
mechanics compared quite well with those obtained from the experimental data. The ionization potentials, highest occupied molecular orbital
energy, lowest unoccupied molecular orbital energy, energy gaps, heat of formation, atomization energies, and vibration frequencies of the
compounds were also calculated. The results of the calculations show that three natural products are stable molecules with high reactive and
various other physical properties. The study also provided an explicit understanding of the sterochemical structure and thermodynamic
properties of the three natural products.
q 2005 Elsevier B.V. All rights reserved.
Keywords :
energy gaps , Vibration frequencies , Atomization energies , B3LYP , 6-31G* , Ionization potentials , HOMO and LUMO energies , Heat of formation
Journal title :
Journal of Molecular Structure
Journal title :
Journal of Molecular Structure