Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5395256 | Computational and Theoretical Chemistry | 2011 | 6 Pages |
Abstract
Charge density distribution and the electrostatic properties of isoniazid drug molecule have been computed from HF and DFT methods with the basis set 6-311Gââ using Bader's theory of atoms in molecules. The molecular geometric parameters predicted by DFT method are in agreement with the reported values. The predicted NN bond distance is 1.414Â Ã
. The dihedral angle between the pyridine ring and the hydrazide group is 27.9°, indicates that these two groups are not coplanar in the molecule. The CN bond distances in the molecule are not equal. The electron density Ïbcp(r) and the Laplacian of electron density â2Ïbcp(r) of NN bond are 2.131 eÃ
-3 and â12.5Â eÃ
â5 respectively. The high degree of electronic charge density depletion at the bond critical point and the low bond dissociation energy of NN bond confirm that this bond is the weakest bond in the molecule, which cleaves during the catalase-peroxidase reaction. A large electronegative potential region is found at the vicinity of O(1) and N(1) atoms, which are the nucleophilic sites of the molecule. The dipole moment of the molecule is 2.04 Debye, implies, isoniazid is a polar molecule.
Related Topics
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Physical and Theoretical Chemistry
Authors
Gnanasekaran Rajalakshmi, Balu Devipriya, Azhagesan Renuga Parameswari, Arputharaj David Stephen, Poomani Kumaradhas,