Anzhelika I. Konovets
Taras Shevchenko National University of Kyiv
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Featured researches published by Anzhelika I. Konovets.
ACS Combinatorial Science | 2014
Andrey V. Bogolubsky; Yurii S. Moroz; Pavel K. Mykhailiuk; Sergey E. Pipko; Anzhelika I. Konovets; Irina V. Sadkova; Andrey A. Tolmachev
Two types of aliphatic sulfonyl halides (Cl versus F) were compared in parallel synthesis of sulfonamides derived from aliphatic amines. Aliphatic sulfonyl fluorides showed good results with amines bearing an additional functionality, while the corresponding chlorides failed. Both sulfonyl halides were effective in the reactions with amines having an easily accessible amino group. Aliphatic sulfonyl chlorides reacted efficiently with amines bearing sterically hindered amino group while the corresponding fluorides showed low activity.
ACS Combinatorial Science | 2014
Andrey V. Bogolubsky; Yurii S. Moroz; Pavel K. Mykhailiuk; Dmitriy M. Panov; Sergey E. Pipko; Anzhelika I. Konovets; Andrey A. Tolmachev
A parallel reductive amination of heteroaromatic amines has been performed using a combination of ZnCl2-TMSOAc (activating agents) and NaBH(OAc)3 (reducing agent). A library of diverse secondary amines was easily prepared on a 50-300 mg scale.
ACS Combinatorial Science | 2014
Andrey V. Bogolubsky; Yurii S. Moroz; Pavel K. Mykhailiuk; Dmitry S. Granat; Sergey E. Pipko; Anzhelika I. Konovets; Roman O. Doroschuk; Andrey A. Tolmachev
One-pot parallel synthesis of unsymmetrical aliphatic ureas was achieved with bis(2,2,2-trifluoroethyl) carbonate. The procedure worked well for both the monosubstituted and functionalized alkyl amines and required no special conditions (temperature control, order, or rate of addition). A library of 96 diverse ureas was easily synthesized.
ACS Combinatorial Science | 2015
Andrey V. Bogolubsky; Yurii S. Moroz; Pavel K. Mykhailiuk; Eugeniy N. Ostapchuk; Alexander V. Rudnichenko; Yurii V. Dmytriv; Anna N. Bondar; Olga A. Zaporozhets; Sergey E. Pipko; Roman A. Doroschuk; Liudmyla N. Babichenko; Anzhelika I. Konovets; Andrey A. Tolmachev
A simple and cost-effective one-pot parallel synthesis approach to sulfides, sulfoxides, and sulfones from thiourea was elaborated. The method combines two procedures optimized to the parallel synthesis conditions: alkylation of thiourea with alkyl chlorides and mono or full oxidation of in situ generated sulfides with H2O2 or H2O2-(NH4)2MoO4. The experimental set up required commonly used lab equipment: conventional oven and ultrasonic bath; the work up includes filtration or extraction with chloroform. The method was evaluated on an 81 member library of drug-like sulfides, sulfoxides, and sulfones yielding the compounds on a 30-300 mg scale. A small-scale synthesis of 2-(benzhydrylsulfinyl)acetamide (modafinil) utilizing our approach resulted in similar efficiency to the published procedures.
RSC Advances | 2015
Andrey V. Bogolubsky; Yurii S. Moroz; Pavel K. Mykhailiuk; Yurii V. Dmytriv; Sergey E. Pipko; Liudmyla N. Babichenko; Anzhelika I. Konovets; Andrey A. Tolmachev
A diverse library of twenty-five 4-mono- and disubstituted semicarbazides was prepared in a one-pot two-step approach. The method includes formation of a carbamate from bis(2,2,2-trifluoroethyl)carbonate or 2,2,2-trifluoroethylchloroformate and a primary or secondary amine and subsequent interaction of the carbamate with hydrazine to result in a semicarbazide. The approach allowed to obtain 4-substituted semicarbazides on a large scale in good yield and high purity.
ACS Combinatorial Science | 2015
Andrey V. Bogolubsky; Yurii S. Moroz; Pavel K. Mykhailiuk; Sergey E. Pipko; Anton V. Zhemera; Anzhelika I. Konovets; Olena O. Stepaniuk; Inna S. Myronchuk; Yurii V. Dmytriv; Roman A. Doroschuk; Olga A. Zaporozhets; Andrey A. Tolmachev
A one-pot parallel synthesis of N(1)-aryl-N(2)-alkyl-substituted oxamides with 2,2,2-trifluoroethyl chlorooxoacetate was developed. The synthesis of a library of 45 oxamides revealed higher efficiency of this reagent over the known ethyl chlorooxoacetate. The reagent was successfully used to prepare the known oxamide-containing HIV entry inhibitors.
Molecular Diversity | 2013
Andrey V. Bogolubsky; Alexander V. Grishchenko; Sergey E. Pipko; Anzhelika I. Konovets; Alexander Chuprina; Andrey A. Tolmachev; Alexander N. Boyko; Alexey Chekotylo; Oleg Lukin
An efficient solution-phase parallel synthesis of alkylated guanidines from commercial thioisocyanates and amines is described. In the first step, a thioisocyanate reacts with one equivalent of ammonia or a primary or secondary amine to give a thiourea intermediate. The latter is S-alkylated with n-dodecyl bromide resulting in the corresponding thiouronium bromide. Finally, the reaction of the thiouronium salt with a second equivalent of ammonia or a primary amine yields an alkylated guanidine. All three synthetic steps are easily combined in a one-pot high-yielding procedure with a simple work-up. Ca. 250 guanidine derivatives with high structural and functional diversity were synthesized by the developed method. 35 representatives reported in this study were fully characterized.
ACS Combinatorial Science | 2018
Andrey V. Bogolyubsky; Olena Savych; Anton V. Zhemera; Sergey E. Pipko; Alexander V. Grishchenko; Anzhelika I. Konovets; Roman O. Doroshchuk; Dmytro N. Khomenko; V. S. Brovarets; Yurii S. Moroz; Mykhailo Vybornyi
A 1,2,4-triazole motif is present in numerous commercialized and investigational bioactive molecules. Despite its importance for medicinal chemistry, there is a lack of convenient combinatorial approaches toward this molecular core. Herein, we present a synthetic strategy suitable for the quick preparation of a library of structurally diverse 1,2,4-triazoles in a one-pot setting. The key steps include the formation of thioureas followed by S-alkylation using 1,3-propane sultone and consecutive ring closure leading to the desired 1,2,4-triazoles. Parallel synthesis yields thousands of 1,2,4-triazoles in a cost- and time-efficient manner from commercially available chemicals.
ACS Combinatorial Science | 2016
Andrey A. Tolmachev; Andrey V. Bogolubsky; Sergey E. Pipko; Alexander V. Grishchenko; Dmytro V. Ushakov; Anton V. Zhemera; Oleksandr O. Viniychuk; Anzhelika I. Konovets; Olga A. Zaporozhets; Pavel K. Mykhailiuk; Yurii S. Moroz
European Journal of Organic Chemistry | 2016
Andrey V. Bogolubsky; Yurii S. Moroz; Pavel K. Mykhailiuk; Sergey E. Pipko; Alexander V. Grishchenko; Anton V. Zhemera; Anzhelika I. Konovets; Roman A. Doroschuk; Yurii V. Dmytriv; Olga A. Zaporozhets; Andrey A. Tolmachev