V. A. Chornous
Bukovinian State Medical University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by V. A. Chornous.
Pharmaceutical Chemistry Journal | 2014
V. A. Chornous; A. N. Grozav; L. D. Todoriko; M. V. Vovk
A series of thiosemicarbazones, the structures of which were established by IR and PMR spectroscopy and mass spectrometry, were synthesized by condensation of 4-chloro-1H-imidazole-5-carbaldehydes with thiosemicarbazide. Some of the synthesized compounds were found to exhibit high inhibitory activity with respect to M. tuberculosis strains that was 1.5 times more effective than the reference drug isoniazid. Astudy of the antimicrobial activity of the synthesized thiosemicarbazones showed that their fungistatic properties were more pronounced than their bacteriostatic properties.
Russian Journal of Organic Chemistry | 2015
V. A. Chornous; O. Ya. Mel’nik; D. A. Mel’nik; Eduard B. Rusanov; M. V. Vovk
Abstract1-Aryl-4-chloro-5-(2-nitrovinyl)-1H-imidazoles reacted with azomethine ylide generated from sarcosine and formaldehyde to afford 1-aryl-4-chloro-5-(4-nitropyrrolidin-3-yl)-1H-imidazoles. The reaction of 1-aryl-4-chloro-5-(2-nitrovinyl)-1H-imidazoles with azomethine ylide generated from L-proline and isatin gave 2′-(1-aryl-4-chloro-1H-imidazol-5-yl)-1′-nitro-1′,2′,5′,6′,7′,7a′-octahydrospiro[indole-3,3′-pyrrolizin]-2(1H)-ones with high regioselectivity. The latter reaction was analyzed by calculating orbital coefficients and global and molecular reactivity indices of the dipole and dipolarophile, as well as the energies of the initial reactants, transition states, and products.
Russian Journal of Organic Chemistry | 2015
O. Ya. Mel’nik; V. A. Chornous; M. V. Vovk
Abstract1-Aryl-3-(1-aryl-4-chloro-1H-imidazol-5-yl)prop-2-en-1-ones prepared from 1-aryl-4-chloro-1H-imidazole-5-carbaldehydes and methyl aryl ketones reacted with nitromethane affording 1-aryl-3-(1-aryl-4-chloro-1H-imidazol-5-yl)-4-nitrobutan-1-ones which were reduced with zink in acetic acid to obtain 1-aryl-5-(2-aryl-3,4-dihydro-2H-pyrrol-4-yl)-4-chloro-1H-imidazoles.
Russian Journal of Organic Chemistry | 2017
A. N. Grozav; V. A. Chornous; V. I. Dorokhov; M. V. Vovk
Oxidative chlorination of 1-aryl-4-benzylsulfanyl-1H-imidazole-5-carbaldehydes gave 1-aryl-5-formyl-1H-imidazole-4-sulfonyl chlorides which reacted with secondary amines and phenols to produce the corresponding N,N-disubstituted 5-formylimidazole-4-sulfonamides and aryl sulfonates. The reaction of 1-aryl-5-formyl-1H-imidazole-4-sulfonyl chlorides with sodium azide, followed by reduction of the resulting sulfonyl azides, led to the formation of N-unsubstituted 5-formylimidazole-4-sulfonamides, and the reaction with alcohols, to 5-formylimidazole-4-sulfonic acids.
Russian Journal of Organic Chemistry | 2017
V. A. Chornous; A. N. Grozav; M. V. Vovk
Abstract5-Aminomethyl-1-(2-haloaryl)-4-chloroimidazoles prepared from 1-(2-haloaryl)-5-formyl-4-chloroimidazoles via simple transformations undergo intramolecular cyclization to 3-chloroimidazo[1,5-a]quinoxalines on heating in DMF in the presence of potassium carbonate.
Russian Journal of Organic Chemistry | 2017
V. A. Chornous; O. Ya. Mel’nik; A. N. Grozav; S. Yu. Suikov; M. V. Vovk
Abstract1-Aryl-4-chloro-5-(2-nitroethenyl)-1H-imidazoles reacted with thiols and aromatic amines via Michael addition to give 5-[(1-arylsulfanyl)-2-nitroethyl)]-4-chloro-1H-imidazoles and N-[1-(1-aryl-4-chloro-1H-imidazol-5-yl)-2-nitroethyl]anilines, respectively. [2 + 3]-Cycloaddition of the title compounds to sodium azide afforded 4-(4-chloro-1H-imidazol-5-yl)-1H-1,2,3-triazoles.
Russian Journal of Organic Chemistry | 2015
V. A. Chornous; A. N. Grozav; O. Ya. Mel’nik; V. V. Pirozhenko; M. V. Vovk
Condensation of 1-aryl-4-chloro-1H-imidazole-5-carbaldehydes with nitroalkanes in the presence of anhydrous ammonium acetate gave 4-chloro-5-(2-nitroalkenyl)-1H-imidazoles which reacted with 5-methyl-2,4-dihydro-3H-pyrazol-3-one according to the Michael addition scheme with formation of 4-[1-(4-chloro-1H-imidazol-5-yl)-2-nitroalkyl]-5-methyl-1H-pyrazol-3-ols.
Russian Journal of Organic Chemistry | 2014
A. N. Grozav; V. A. Chornous; A. A. Palamar; M. V. Vovk
Alkylation of (1-aryl-4-chloro-1H-imidazol-5-yl)methanethiols with alkyl halides, propargyl bromide, or chloroacetic acid gave 1-aryl-5-(R-sulfanylmethyl)-4-chloro-1H-imidazoles. 1-Aryl-4-chloro-5-(methylsulfanylmethyl)-1H-imidazoles and [(1-aryl-4-chloro-1H-imidazol-5-yl)methylsulfanyl]acetic acids were oxidized to the corresponding sulfones with potassium permanganate.
Russian Journal of Organic Chemistry | 2012
V. A. Chornous; A. N. Grozav; M. V. Vovk
Aryl-2,4-dichloro-5-formylimidazoles by a successive treatment with hydroxylamine and thionyl chloride were converted into 1-aryl-2,4-dichloroimidazole-5-carbonitriles which by the action of sodium azide and tin(II) chloride were transformed into 2-amino-1-aryl-4-chloroimidazole-5-carbonitriles. The consecutive reactions of 2-azido-1-aryl-4-chloro-5-formylimidazoles with N-bromosuccinimide, methanol, or amides led to the formation of methyl esters and amides of 2-azido-1-aryl-4-chloroimidazole-5-carboxylic acids. The reduction of the latter with tin(II) chloride resulted in the corresponding derivatives of 2-amino-1-aryl-4-chloroimidazole-5-carboxylic acids, and the reduction of 2-azido-1-aryl-4-chloroimidazole-5-carboxylic acids was accompanied with decarboxylation and yielded 2-amino-1-aryl-4-chloroimidazoles.
Russian Journal of Organic Chemistry | 2018
V. A. Chornous; A. N. Grozav; M. V. Vovk
Intramolecular cyclization of S-BBBBB[1-(2-bromoaryl)-4-chloro-1H-imidazol-5-yl]methylBBBBB ethanethioates on heating in DMF in the presence of K2CO3 afforded 3-chloro-4H-imidazo[5,1-c][1,4]benzothiazines which were oxidized with hydrogen peroxide to the corresponding S,S-dioxides.