Affiliation:
1. Department of Chemistry, Acharya Nagarjuna University, Nagarjuna Nagar-522510, India
Abstract
The primary aim of this study is to show the importance of molecular structure analysis of
pharmaceutical active coumarins compounds using quantum chemistry methods based on density
functional theory. To explore the theoretical calculations for global descriptors, the standard Gaussian
09W program was used for coumarins compounds. The full geometry optimization was carried out by
the B3LYP/6-311G level of theory. The octanol-water and air-water partition coefficients were also
estimated using functional density theory. The order of the HOMO-LUMO energy gap for studied
coumarins in the gas phase is umbelliferone (UBA) < (herniarin) HNR ~ (crenulatin) CNT < (scopoletin)
SCT < (scoparone) SCO < (isoscopoletin) IST < (4-methylesculetin) MST < (umbelliferone-2-
carboxylic acid) UCA < (isofraxidin) IFD < (fraxetin) FXT < (aesculetine) ACT < (dapnetine) DPT.
Therefore, UBA molecule in gas phase is less stable. Compared to the measured index of electrophilicity
(DE). The MST molecule is stronger, more reactive, nucleophile electrophile at the gas phase and in
solvents. In all solvent phases, CNT and UCA molecules have lower values, which mean they are
strong nucleophiles. From the log P values of ACT and MST coumarins are in between 1.35-1.8, so
ACT and MST coumarins use oral and intestinal absorptions.
Publisher
Asian Journal of Chemistry