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Pudovik Michael Arkad'evich

Publications in Math-Net.Ru

  1. Ring-opening reactions of nitrogen-containing heterocyclic compounds at the nitrogen–heteroatom bond

    Usp. Khim., 95:1 (2026),  1–15
  2. New 7-azacoumarin-3-carboxamide phosphonium salts: cytotoxicity and the Wittig olefination

    Mendeleev Commun., 35:5 (2025),  537–539
  3. New triazole-containing 7-azacoumarin-3-carboxamides: synthesis and biological properties

    Mendeleev Commun., 34:5 (2024),  688–690
  4. Anticancer activity of novel 3-azaxanthenes

    Mendeleev Commun., 31:5 (2021),  664–666
  5. Advances in the synthesis of heterocycles bearing an endocyclic urea moiety

    Usp. Khim., 90:3 (2021),  395–417
  6. New 1-hetarylfuropyridines and chromenes based on pyridoxal and 4-hydroxycoumarin

    Mendeleev Commun., 30:6 (2020),  765–767
  7. Synthesis of 1-(2-aminoethylsulfonyl)-2-phosphorylpyrrolidines via consecutive Arbuzov and aza-Michael reactions and their antitumor activity

    Mendeleev Commun., 29:6 (2019),  686–687
  8. Ring opening reactions of nitrogen heterocycles

    Usp. Khim., 88:11 (2019),  1104–1127
  9. New bicyclic phosphonates of unsymmetrical structure

    Mendeleev Commun., 28:6 (2018),  655–656
  10. Synthesis of 1-(hydroxyaryl)furo[3,4-c]pyridines from 1-amino(alkoxy)furo[3,4-c]pyridines and (poly)phenols

    Mendeleev Commun., 28:5 (2018),  551–552
  11. Synthesis and structure of new 2-aryl-substituted pyrrolidines containing phosphine oxide group

    Mendeleev Commun., 28:4 (2018),  398–400
  12. Synthesis of novel highly functionalized triazole-linked calix[4]resorcinols via click reaction

    Mendeleev Commun., 27:6 (2017),  556–558
  13. New phosphorus-containing calix[4]pyridine based on para-thiophosphorylated derivative of benzaldehyde

    Mendeleev Commun., 27:3 (2017),  287–289
  14. Reactions of nitrogen-containing acetals with aromatic nucleophiles

    Usp. Khim., 86:1 (2017),  75–98
  15. Phosphorus-containing macrocyclic compounds: synthesis and properties

    Usp. Khim., 82:2 (2013),  150–186
  16. Synthesis of New calix[4]resorcinols with [N-diethoxyphosphorylmethyl-N-(2,2-dimethoxyethyl)amino]methyl Substituents at the Upper Rim

    Mendeleev Commun., 22:6 (2012),  325–326
  17. New calix[4]resorcinols with diarylmethane fragments on the upper rim of the molecule

    Mendeleev Commun., 21:1 (2011),  44–45
  18. Stereospecific cascade cyclization reaction with the formation of tetracyclic hexacoordinated phosphorus derivatives

    Mendeleev Commun., 20:4 (2010),  226–228
  19. Reactions of resorcinol derivatives with 1-methyl-3-phenylimidazol-2-one as a new method for the synthesis of 5-arylimidazolidin-2-ones

    Mendeleev Commun., 18:1 (2008),  54–55
  20. Synthesis of enantiopure 1,3,4-thiazaphospholes

    Mendeleev Commun., 17:6 (2007),  323–324
  21. Unusual reactions of resorcinol and methylresorcinol with methylaminoacetaldehyde dimethyl acetal

    Mendeleev Commun., 15:4 (2005),  153–154
  22. Interaction of resorcinol–octanal cyclotetramer with bis(N,N-diethylamido)menthylphosphite

    Mendeleev Commun., 6:4 (1996),  157–159
  23. Heterophosphacyclanes in organic synthesis

    Usp. Khim., 63:12 (1994),  1087–1113
  24. The Reactivity of 1,3,2-Diheterophospholans Containing a Tricoordinate Phosphorus Atom

    Usp. Khim., 52:4 (1983),  640–668
  25. The Reactivity of 1,3,2-Diheterophospholans and 1,3,2-Diheterophosphorinanes with a Tetracoordinate Phosphorus Atom

    Usp. Khim., 51:8 (1982),  1305–1336


© Steklov Math. Inst. of RAS, 2026