Quinolines are aromatic compounds consisting of benzene rings with a pyridine heterocyclic system. In this study, the structure and orbital interactions of the methyl 5-6 dihydro benzo(h) quinolone-4-carboxylate (MDQC) molecule, which is a quinoline derivative, were analyzed. In the calculation using the B3LYP/6-311++g(d,p) level, three conformers were found in the minimum energy state according to the O=C-O-C dihedral angle scan. The energy difference (E+ZPV) between the conformers was calculated ca. 1.9 and 34.8 kJ mol-1, respectively. The relative stability of the conformers was explained using the natural bond orbital (NBO) method and performed. The Fock matrix equation calculated donor and acceptor pairs and orbital energies for NBO pairs for the most stable conformer (MDQC-1). Dominant orbital interactions of selected NBOs for MDQC-1 were calculated at the theory level B3LYP/6-311++g(d,p) and plotted. The molecular electrostatic potential (MEP) surfaces were calculated by the DFT/B3LYP/6-311++g(d,p) method and drawn. NBO charges were calculated for MDQC-1 and MDQC-2 and analyzed.
Methyl 5-6 dihydro benzo(h) quinolone-4-carboxylate NBO Orbital interaction Stabilization energy.
Eskisehir Technical University Commission of Research Project
20ADP144
This work was supported by the Eskisehir Technical University Commission of Research Project under grant no: 20ADP144.
Quinolines are aromatic compounds consisting of benzene rings with a pyridine heterocyclic system. In this study, the structure and orbital interactions of the methyl 5-6 dihydro benzo(h) quinolone-4-carboxylate (MDQC) molecule, which is a quinoline derivative, were analyzed. In the calculation using the B3LYP/6-311++g(d,p) level, three conformers were found in the minimum energy state according to the O=C-O-C dihedral angle scan. The energy difference (deltaE+ZPV) between the conformers was calculated ca. 1.9 and 34.8 kJ mol-1, respectively. The relative stability of the conformers was explained using the natural bond orbital (NBO) method and performed. The Fock matrix equation calculated donor and acceptor pairs and orbital energies for NBO pairs for the most stable conformer (MDQC-1). Dominant orbital interactions of selected NBOs for MDQC-1 were calculated at the theory level B3LYP/6-311++g(d,p) and plotted. The molecular electrostatic potential (MEP) surfaces were calculated by the DFT/B3LYP/6-311++g(d,p) method and drawn. NBO charges were calculated for MDQC-1 and MDQC-2 and analyzed.
Methyl 5-6 dihydro benzo(h) quinolone-4-carboxylate NBO Orbital interaction Stabilization energy
20ADP144
Birincil Dil | İngilizce |
---|---|
Konular | Mühendislik |
Bölüm | Makaleler |
Yazarlar | |
Proje Numarası | 20ADP144 |
Yayımlanma Tarihi | 24 Aralık 2021 |
Yayımlandığı Sayı | Yıl 2021 |