Effect of substituent on the UV-Vis spectra: an extension from disubstituted to multi-substituted benzylideneanilines
Linyan Wang, Chao‐Tun Cao, Chaotun Cao, Chenzhong Cao, Chenzhong Cao
Abstract
Linyan Wang, Chao‐Tun Cao, Chaotun Cao, Chenzhong Cao, Chenzhong Cao
Abstract
For studying the substituent effects on the νmax of substituted benzylideneanilines (XBAYs) systematically, 12 samples of 3,3′-disubstituted XBAYs and 52 samples of multi-substituted XBAYs were synthesized, and the substituent effects on their νmax were investigated in this paper. A modified regression equation quantifying the νmax of 4,4′/4,3′/3,4′/3,3′-disubstituted and multi-substituted XBAYs (shown as Eq. 3) was obtained. The results showed that the substituent effects on the νmax of 3,3′-substituted and multi-substituted XBAYs became more complicated. In Eq. 3, the contributions of the meta-parameters to the νmax of XBAYs were different from those of the corresponding para-parameters. For the substituent cross-interaction effects, there is no difference whatever the substituents are at meta-position or para-position. Compared with Eq. 1, Eq. 3 obtained in this paper has a wider application and more accuracy in quantifying the νmax of substituted XBAYs. Copyright © 2016 John Wiley & Sons, Ltd.
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For studying the substituent effects on the νmax of substituted benzylideneanilines (XBAYs) systematically, 12 samples of 3,3′-disubstituted XBAYs and 52 samples of multi-substituted XBAYs were synthesized, and the substituent effects on their νmax were investigated in this paper. A modified regression equation quantifying the νmax of 4,4′/4,3′/3,4′/3,3′-disubstituted and multi-substituted XBAYs (shown as Eq. 3) was obtained. The results showed that the substituent effects on the νmax of 3,3′-substituted and multi-substituted XBAYs became more complicated. In Eq. 3, the contributions of the meta-parameters to the νmax of XBAYs were different from those of the corresponding para-parameters. For the substituent cross-interaction effects, there is no difference whatever the substituents are at meta-position or para-position. Compared with Eq. 1, Eq. 3 obtained in this paper has a wider application and more accuracy in quantifying the νmax of substituted XBAYs. Copyright © 2016 John Wiley & Sons, Ltd.
Key concepts: Substituent, Chemistry, Context (archaeology), Computational chemistry, Medicinal chemistry, Paleontology, Biology