Experimental (13C NMR) and Theoretical (ab Initio Molecular Orbital Calculations) Studies on the Prototropic Tautomerism of Benzotriazole and Some Derivatives Symmetrically Substituted on the Benzene Ring

The prototropic tautomerism in anhydrous DMSO of benzotriazole and six derivatives symmetrically substituted on the benzene ring (5,6-dichloro, tetrachloro, 4,7-dibromo, tetrabromo, 5,6-dimethyl, and tetramethyl), was followed by both experimental (13C NMR and UV spectroscopy) and theoretical method...

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Veröffentlicht in:The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory Molecules, spectroscopy, kinetics, environment, & general theory, 2007-07, Vol.111 (28), p.6501-6509
Hauptverfasser: Poznański, Jarosław, Najda, Andżelika, Bretner, Maria, Shugar, David
Format: Artikel
Sprache:eng
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Zusammenfassung:The prototropic tautomerism in anhydrous DMSO of benzotriazole and six derivatives symmetrically substituted on the benzene ring (5,6-dichloro, tetrachloro, 4,7-dibromo, tetrabromo, 5,6-dimethyl, and tetramethyl), was followed by both experimental (13C NMR and UV spectroscopy) and theoretical methods. In all of the analyzed systems, predominance of the asymmetric form, N(1)/N(3) protonated, was found. The rates of the N(1)−H ↔ N(3)−H prototropic equilibrium, estimated by 13C NMR techniques, were in the medium exchange regime of 300−3000 s-1, and are correlated with the spectroscopically determined pK a values in aqueous medium, and the anionic forms are the putative rate-limiting intermediate states.
ISSN:1089-5639
1520-5215
DOI:10.1021/jp071611h