V. P. Krasnov
Russian Academy of Sciences
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Featured researches published by V. P. Krasnov.
Tetrahedron-asymmetry | 1999
Valery N. Charushin; V. P. Krasnov; Galina L. Levit; Marina A. Korolyova; Michael I. Kodess; O. N. Chupakhin; Min H Kim; Ho Seong Lee; Young Jun Park; Kyung-Chul Kim
Abstract A very effective method for the preparation of the ( S )-enantiomers of 2,3-dihydro-3-methyl- and 7,8-difluoro-2,3-dihydro-3-methyl-4 H -1,4-benzoxazines ( 1a and 2a ) was developed using ( S )-(+)-naproxen acyl chloride as the chiral agent for kinetic resolution of racemates. This method enables one to obtain the ( S )-enantiomers of benzoxazines 1a and 2a of high enantiomeric purity (99% ee ) in nearly 50% yield, taking into account that the ( R )-enantiomers are recycled after their racemisation.
Tetrahedron-asymmetry | 2003
V. P. Krasnov; Galina L. Levit; Iraida M. Bukrina; I. N. Andreeva; Liliya Sh. Sadretdinova; Marina A. Korolyova; M. I. Kodess; Valery N. Charushin; O. N. Chupakhin
Acylation of racemic 2,3-dihydro-3-methyl-4H-1,4-benzoxazine, 2-methyl-1,2,3,4-tetrahydroquinoline and 2-methylindoline with N-tosyl-(S)-prolyl chloride resulted in their kinetic resolution with the predominant formation of (R,S)-diastereoisomeric amides, des being 80, 66 and 38%, respectively. Recrystallisation of the amides followed by acid hydrolysis gave individual (R)-enantiomers of heterocyclic amines.
Tetrahedron-asymmetry | 2002
V. P. Krasnov; Galina L. Levit; Valery N. Charushin; A. N. Grishakov; M. I. Kodess; V. N. Kalinin; V. A. Ol'shevskaya; O. N. Chupakhin
The enantiomers of 3-amino-1-methyl-1,2-dicarba-closo-dodecaborane were prepared by means of resolution of the racemic mixture via acylation by (S)-naproxen chloride followed by separation and subsequent acid hydrolysis of each of the diastereoisomeric amides. Partial racemization of enantiomeric 3-aminocarboranes was observed during acid hydrolysis.
Chemistry of Heterocyclic Compounds | 2012
Dmitry A. Gruzdev; Galina L. Levit; M. I. Kodess; V. P. Krasnov
Enantiomers of 2-methyl-6-nitro-1,2,3,4-tetrahydroquinoline have been obtained by kinetic resolution of racemic 2-methyl-1,2,3,4-tetrahydroquinoline in acylation with acyl chlorides of N-protected amino acids followed by regioselective nitration of the diastereoisomeric amides and acidic hydrolysis. The introduction of a trifluoroacetyl protecting group into the position 1 of the enantio pure nitro compound followed by the reduction led to (S)-6-amino-2-methyl-1-trifluoroacetyl-1,2,3,4-tetra-hydroquinoline in a high yield.
Chemistry of Heterocyclic Compounds | 2012
Evgeny N. Chulakov; Galina L. Levit; A. A. Tumashov; L. Sh. Sadretdinova; V. P. Krasnov
Acylation of 2-methyl-1,2,3,4-tetrahydroquinoline and 2-methylindoline with the acyl chlorides of naproxen, ibuprofen, and 2-phenylpropionic acid has been found to lead to efficient kinetic resolution with predominant formation of the (S,S)-(R,R)-diastereoisomers. The highest acylation stereoselectivity was found in toluene at -20°C. No significant kinetic resolution of N-(sec-butyl)aniline and 2-methylpiperidine was achieved by using 2-arylpropionyl chlorides.
Pharmaceutical Chemistry Journal | 2002
Galina L. Levit; L. V. Anikina; Yu. B. Vikharev; Alexander M. Demin; V. A. Safin; Tatyana V. Matveeva; V. P. Krasnov
In recent years, there have been attempts to modify the well-known nonsteroidal antiinflammatory drugs by reactions with natural amino acids, aimed at eliminating undesired side effects of the drug action [1]. In particular, the synthesis of naproxen amide with glycine was reported in [2, 3]. The aim of this study was to obtain naproxen amides with some amino acid derivatives and characterize the products with respect to the antiinflammatory and analgesic activity and acute toxicity. The synthesis of naproxen amides (II – V) with methyl esters of (S )-methionine, (S )-phenylalanine, (S )-histidine, and (S )-leucine was based on the condensation of (S )-naproxen chloroanhydride (I) with the corresponding amino acid esters in DMF in the presence of triethanolamine (TEA) [4]:
Chemistry of Heterocyclic Compounds | 2014
Dmitry A. Gruzdev; Sergey A. Vakarov; Galina L. Levit; V. P. Krasnov
The kinetic resolution of racemic heterocyclic amines via acylation with N-tosyl-(S)-prolyl chloride was systematically investigated. It was established that racemic mixtures of aromatic amines could be resolved with high efficiency, while the acylation of 2- and 3-methylpiperidines occurred with low diastereoselectivity. A method for the preparation of enantiomerically pure (3R)-7,8-difluoro-3-methyl-3,4-dihydro-2H-[1,4]benzoxazine was developed.
Russian Chemical Bulletin | 2004
V. P. Krasnov; Galina L. Levit; Marina A. Korolyova; Iraida M. Bukrina; L. Sh. Sadretdinova; I. N. Andreeva; V. N. Charushin; O. N. Chupakhin
The influence of the reaction conditions (solvent, base) on the diastereoselectivity of acylation of (±)-3-methyl-2,3-dihydro-4H-1,4-benzoxazine with (S)-naproxen and N-tosyl-(S)-proline chlorides was studied. The highest diastereoselectivity was observed for the reaction carried out in benzene in the presence of aliphatic tertiary amines.
Catalysis Letters | 2016
O. V. Fedorova; Yulia A. Titova; Alexey Yu. Vigorov; Maria S. Toporova; O. A. Alisienok; A. N. Murashkevich; V. P. Krasnov; Gennady L. Rusinov; Valery N. Charushin
The asymmetric Biginelli reaction was investigated in the presence of N-[(2S,4R)-4-hydroxyprolyl]-(S)-1-phenylethylamine as chiral inducer and silicon, titanium or aluminum oxides (individual and mixed, bulk and nanosized) as heterogeneous catalysts. It has been shown that all studied oxides improve chemo- and stereoselectivity of the Biginelli reaction.Graphical Abstract
Ferroelectrics | 2015
Pavel Zelenovskiy; V. Ya. Shur; A. S. Nuraeva; Semen Vasilev; Daria Vasileva; D. O. Alikin; D. S. Chezganov; V. P. Krasnov; A. L. Kholkin
Morphology and piezoelectric properties of diphenylalanine microcrystals grown by drying the droplet of methanol and water mixture in various proportions have been studied. We have found that the increase of water concentration leads to the significant change of the microcrystal morphology from flat dendrite structures to elongated microcrystals: microtubes and microrods. The effect was attributed to increasing of the drying time. The morphology of the dendrite structures was revealed and empirical dependence of the dendrite thickness on diameter was found. Finally, the piezoelectric activity of the microtubes was demonstrated using the piezoresponse force microscopy.