Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5418548 | Journal of Molecular Structure: THEOCHEM | 2007 | 10 Pages |
Abstract
The conformations of N-benzylideneanilines p-X-C6H4-CHN-C6H4-p-Y (X, YÂ =Â NO2, CN, CF3, F, Cl, Br, H, Me, OMe, NMe2) have been studied by B3LYP density functional (DFT) hybrid method in combination with the 6-31Gâ or 6-311Gâ split valence basis set. The twist of the plane of the aniline ring with respect to the other part of the molecule (Ï2) is systematically controlled by substituents X and Y, the effect of Y being larger. The value of the dihedral angle Ï2 correlates nicely with equation Ï2=ÏF(Y)XÏF(Y)+ÏR+(Y)XÏR+(Y)+kXorÏ2=ÏF(X)YÏF(X)+ÏR-(X)YÏR-(X)+kY, respectively, when aniline or benzylidene substituent is varied. ED substituents X diminish the sensitivity of Ï2 to the aniline substituent Y[ÏF(Y)XandÏR+(Y)X] while ED substituents Y increase the sensitivity of Ï2 to the benzylidene substituent X[ÏF(X)YandÏR-(X)Y]. There seems to be two competitive conjugative interactions for the aniline ring Ï electrons: one with the nitrogen lone pair and one with the CN unit. Substituents X and Y adjust the extent of these interactions and therefore the conformation of the molecule. A good correlation is observed between the dihedral angle Ï2 and the experimental 13C NMR chemical shift of the CN carbon of N-benzylideneanilines in CDCl3.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Helmi Neuvonen, Kari Neuvonen, Andreas Koch, Erich Kleinpeter,