A. V. Tverdokhlebov
Taras Shevchenko National University of Kyiv
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Featured researches published by A. V. Tverdokhlebov.
Chemistry of Heterocyclic Compounds | 1999
E. V. Resnyanskaya; T. V. Shokol; Yu. M. Volovenko; A. V. Tverdokhlebov
The reaction of 2-(2-azahetaryl)-3-oxo-4-chlorobutane nitriles with esters of aromatic acids was studied. A series of 1H,4H-3-(2-azahetaryl)pyrrolo[1,2-a] quinazoline-2,5-diones and 1-aryl-2-amino-3-(2-azahetaryl)-4-(5H)-oxopyrroles was obtained. The reaction of the latter with hydrazine and acetic anhydride was investigated.
Chemistry of Heterocyclic Compounds | 1998
A. V. Tverdokhlebov; Yu. M. Volovenko; T. V. Shokol
A study has been made of the interaction of 2-[2-(benz)azolyl]3-keto-4-chlorobutanenitriles with primary aliphatic amines. This is a convenient method for the synthesis of 2-amino-3-[2-(benz)azolyl]-4(5H)-ketopyrroles.
Russian Journal of Organic Chemistry | 2004
E. V. Resnyanskaya; A. V. Tverdokhlebov; Yu. M. Volovenko; T. V. Shokol
Alkylation of 3- and 4-(5-amino-4-hetaryl-2,3-dihydro-3-oxopyrrol-1-yl)benzoic acids with phenacyl bromides or chloroacetanilides in DMF in the presence of triethylamine occurs at the carboxy group with high selectivity and yields the corresponding phenacyl and arylcarbamoylmethyl esters. The initial pyrrolylbenzoic acids were synthesized by reaction of 3- and 4-aminobenzoic acids with 4-chloro-2-hetaryl-3-oxo-butyronitriles.
Russian Journal of Organic Chemistry | 2001
Yu. M. Volovenko; T. A. Volovnenko; A. V. Tverdokhlebov; I. G. Ryabokon
Reactions of 2-(4-aryl-1,3-thiazol-2-yl)-3-oxo-4-chlorobutyronitriles with primary aromatic amines result in nucleophilic substitution of the chlorine atom by amino group, followed by intramolecular addition of the secondary amino group to the cyano group. The products are 5-amino-1-aryl-4-(4-aryl-1,3-thiazol-2-yl)- 2,3-dihydro-1H-pyrrol-3-ones which are structurally related to the known antiischemic drugs.
Russian Journal of Organic Chemistry | 2005
E. V. Resnyanskaya; A. V. Tverdokhlebov; A. A. Tolmachev; Yu. M. Volovenko
A method was developed for preparation of 5-amino-4-(4-aryl-2-thiazolyl)-2,3-dihydro-2-pyrrolones by alkylation of 4-aryl-2-thiazolylacetonitriles by N-substituted chloroacetamides in the presence of K2CO3. In 1-(1-naphthyl)-substituted pyrrolones atropoisomerism was observed.
Chemistry of Heterocyclic Compounds | 2002
Yu. M. Volovenko; E. V. Resnyanskaya; A. V. Tverdokhlebov
A convenient method has been developed for the synthesis of 3-hetaryl-1,2,4,5-tetrahydropyrrolo[1,2-a]quinazoline-2,5-diones by the interaction of 4-chloro-2-hetaryl-3-oxobutyronitriles with substituted anthranilic acids.
Chemistry of Heterocyclic Compounds | 2001
Yu. M. Volovenko; T. A. Volovnenko; A. V. Tverdokhlebov
We have obtained 2-(4-arylthiazol-2-yl)-4-chloro-3-oxobutyronitriles by acylation of 4-aryl-2-cyanomethylthiazoles with α-chloroacetyl chloride. We have studied their reaction with secondary aliphatic amines, leading to formation of 4-dialkylamino-2-(4-arylthiazol-2-yl)-3-oxobutyronitriles, and also intramolecular alkylation with formation of 3-aryl-7-cyano-6(5H)-oxopyrrolo[2,1-b]thiazoles. We have determined some aspects of the tautomerism of the synthesized compounds.
Chemistry of Heterocyclic Compounds | 2004
A. V. Tverdokhlebov; A. B. Lyashenko; Yu. M. Volovenko; A. A. Tolmachev
Abstract2-Hetaryl-3-oxo-4-phthalimidobutyronitriles (and pentanonitriles) were obtained with high yields by C-acylation of hetarylacetonitriles with N-phthaloylglycine and α-alanine chlorides respectively under the conditions of base catalysis. Hydrazinolysis of the phthaloyl protection in these compounds leads to the formation of 5-amino-4-hetaryl-2,3-dihydro-1H-3-pyrrolones.
Chemistry of Heterocyclic Compounds | 2001
Yu. M. Volovenko; A. V. Tverdokhlebov; T. A. Volovnenko
The reaction of 2-(2-azahetaryl)-3-oxo-4-chlorobutyronitriles with substituted benzaldehyde hydrazones gives 4-arylideneamino-2-(1-R-benzimidazol-2-yl)-3-oxobutyronitriles, the structures of which were proved using spectroscopic data, the results of elemental analysis, and through their chemical reactions. It was found that the reaction course depends on the basicity of the heterocyclic fragment in the starting nitrile. A likely mechanism for the process is proposed.
Chemistry of Heterocyclic Compounds | 2000
Yu. M. Volovenko; A. V. Tverdokhlebov