Intra- and intermolecular hydrogen bonding in acetylacetone and benzoylacetone derived enaminone derivatives (CROSBI ID 209725)
Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija
Podaci o odgovornosti
Lazić, Vedrana ; Jurković, Mihaela ; Jednačak, Tomislav ; Hrenar, Tomica ; Parlov Vuković, Jelena ; Novak, Predrag
engleski
Intra- and intermolecular hydrogen bonding in acetylacetone and benzoylacetone derived enaminone derivatives
The structure and hydrogen bonding in solution of acetylacetone and benzoylacetone derived enaminone derivatives, 1a–1d and 2a–2d, have been studied by a combination of experimental (NMR and UV spectroscopies) and theoretical (PM6 and DFT) methods. It has been shown that all studied compounds predominantly existed in the localised keto-amine tautomeric form in solution as found also in the solid state. Significant line- broadening and down-field chemical shifts of NH and OH protons have strongly indicated that both groups formed hydrogen bonds, which has further been supported by quantum chemical calculations. Temperature and concentration dependent NMR measurements have pointed towards the fact that NH protons are engaged in strong intramolecular hydrogen bonds of the NH...O=C type in both solvents. On the other hand, OH protons are involved in weaker intermolecular hydrogen bonding with solvent molecules in DMSO, while in chloroform intermolecular interactions between two molecules dominate. The results presented in this paper can be used for better understanding and further exploiting properties these ligands possess, especially their bioactivity.
enaminone derivatives; structure; hydrogen bonding; NMR and UV spectroscopy; quantum chemical calculations
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Podaci o izdanju
1079
2015.
243-249
objavljeno
0022-2860
10.1016/j.molstruc.2014.09.048