Triazine derivatives: Application of Cu(I) supported on a weakly acidic cation-exchanger resin in a comparative study

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Abstract

An efficient and simple methodology for Ullmann Cu(I)-catalyzed synthesis of di- and trisubstituted 1,3,5-triazine derivatives from dichlorotriazinyl benzenesulfonamide and corresponding nucleophiles is reported. Cations Cu(I) supported on macroporous and weakly acidic, low-cost industrial resin of polyacrylate type were used as a catalyst. The reaction times and yields were compared with traditional synthetic methods for synthesis of substituted 1,3,5-triazine derivatives via nucleophilic substitution of chlorine atoms in dichlorotriazinyl benzenesulfonamide. It was found that Ullmann-type reactions provide significantly shortened reaction times and, in some cases, also higher yields. Finally, trisubstituted s-triazine derivatives were effectively prepared via Ullmann-type reaction in a one-pot synthetic design. Six new s-triazine derivatives with potential biological activity were prepared and characterized.

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Havránková, E., Csöllei, J., & Pazdera, P. (2019). Triazine derivatives: Application of Cu(I) supported on a weakly acidic cation-exchanger resin in a comparative study. Molecules, 24(19). https://doi.org/10.3390/molecules24193586

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