Диссертация (1150389), страница 30
Текст из файла (страница 30)
– 2010. – Vol. 8. – P. 2204-2211.[135] Hequet, A. 1-(1H-Indol-3-yl)ethanamine Derivatives as Potent Staphylococcus aureusNorA Efflux Pump Inhibitors / A. Hequet, O. N. Burchak, M. Jeanty, X. Guinchard, E. LePihive, L. Maigre, P. Bouhours, D. Schneider, M. Maurin, J.-M. Paris, J.-N. Denis, C. Jolivalt //ChemMedChem.
– 2014. – Vol. 9. – P. 1534-1545.[136] Loudet, A. BODIPY Dyes and Their Derivatives: Syntheses and Spectroscopic Properties /A. Loudet, K. Burgess // Chem. Rev. – 2007. – V. 107. – P. 4891-4932.[137] Taniguchi, M. Imine-substituted dipyrromethanes in the synthesis of porphyrins bearingone or two meso substituents / M. Taniguchi, A. Balakumar, D. Fan, B. E. McDowell, J. S.Lindsey // J. Porphyrins Phthalocyanines – 2005. – Vol. 9.
– P. 554-574.[138] Sobral, A. J. F. N. One-step synthesis of dipyrromethanes in water / A. J. F. N. Sobral, N.G. C. L. Rebanda, M. da Silva, S. H. Lampreia, M. R.Silva, A. M. Beja, J. A. Paixão, A. M. d’A.Rocha Gonsalves // Tetrahedron Lett. – 2003. – Vol. 44. – P. 3971-3973.[139] Durantini, E. N.
Synthesis of 5-(4-Acetamidophenyl)-10,15,20-tris(4-Substituted Phenyl)Porphyrins using Dipyrromethanes / E. N. Durantini, J. J. Silber // Synth. Comm. – 1999. – Vol.29. – P. 3353-3368.[140] Singh, K. Efficient and Versatile Single-Pot Alternative Approach to Dipyrromethanes / K.Singh, S. Behal, P. K. Deb // Synth.
Comm. – 2005. – Vol. 35. – P. 929-934.[141] Abada, Z. Synthesis and antiprotozoal activity of original porphyrin precursors andderivatives / Z. Abada, S. Cojean, S. Pomel, L. Ferrie, B. Akagah, A. T. Lormier, P. M. Loiseau,B. Figadère // Eur. J. Med. Chem. – 2013. – Vol. 67. – P. 158-165.[142] Soares, M. I. L. Microwave-assisted generation and reactivity of aza- and diazafulveniummethides: heterocycles via pericyclic reactions / M. I. L.
Soares, T. M. V. D. Pinho e Melo //Tetrahedron Lett. – 2008. – Vol. 49. – P. 4889-4893.150[143] Burger, U. [6π+4π] Cycloadditionso Of 5-Azoniafulvene Ions With Nitrones AndAzomethine Imines / U. Burger, A. O. Bringhen // Tetrahedron Lett. – 1988. – Vol. 29. – P.4415-4418.[144] Na, R. Thermal [3+2] cycloaddition reaction of azomethine imines with allenoates fordinitrogen-fused heterocycles / R. Na, H. Liu, Z. Li, B. Wang, J. Liu, M. Wang, J. Zong, H.
Guo// Tetrahedron. – 2012. – Vol. 68. – P. 2349-2356.[145] Zhang, L. Thermal [3+2] Cycloaddition of Aromatic Azomethine Imines with Allenoates /L. Zhang, C. Jing, H. Liu, B. Wang, Z. Li, H. Jiang, H. Yu, H. Guo // Synthesis. – 2013. – Vol.45. – P. 53-64.[146] Na, R. Phosphine-Catalyzed Annulations of Azomethine Imines Allene-Dependent [3 + 2],[3 + 3], [4 + 3], and [3 + 2 + 3] Pathways / R. Na, C. Jing, Q. Xu, H. Jiang, X.
Wu, J. Shi, J.Zhong, M. Wang, D. Benitez, E. Tkatchouk, W. A. Goddard III, H. Guo, O. Known // J. Am.Chem. Soc. – 2011. – Vol. 133. – P. 13337-13348.[147] Jing, C. Phosphine-Catalyzed [3+2] and [4+3] Annulation Reactions of C,N-CyclicAzomethine Imines with Allenoates / C. Jing, R. Na, Bo. Wang, H. Liu, L. Zhang, J. Liu, M.Wang, J. Zhoung, O. Known, H. Guo // Adv. Synth. Catal. – 2012. – Vol. 354. – P. 1023-1034.[148] Zhou, W. Gold catalyzed [3+2] cycloaddition of N-allenyl amides with azomethine imines/ W.
Zhou, X.-X. Li, G.-H. Li, Y. Wu, Z. Chen // Chem. Commun. – 2013. – Vol. 49. – P. 35523554.[149] Padwa, A. Dipolar Cycloadoition Reaction Of (Phenylsulfonyl)Propadjene With NitronesAnd Alkylation Studies Of The Cycloadducts / A. Padwa, S. P. Carter, U. Chiacchio, D. N. Kline// Tetrahedron Lett. – 1986. – Vol.
27. – P. 2683-2686.[150] Padwa, A. A Study Of The 5-Exo Methylene-Isoxazolidine To 3-PyrrolidinoneRearrangement / A. Padwa, Y. Tomioka, M. K. Venkartramanan // Tetrahedron Lett. – 1987. –Vol. 28. – P. 755-785.[151] Padwa, A. Peracid Oxidation of 4-Isoxazolines as a Method for the Preparation of α,βUnsaturated Carbonyl Compounds / A. Padwa, U. Chiacchio, D.
N. Kline, J. Perumattam // J.Org. Chem. – 1987. – Vol. 53. – P. 2238-2245.[152] Padwa, A. Study of the Thermal Transformation of 5-exo-Methyleneisoxazolidines to 3Pyrrolidinone / A. Padwa, M. Matzinger, Y. Tomioka, M. K. Venkartramanan // J. Org. Chem. –1987. – Vol. 53. – P.
955-963.[153] Wang, X.-J. Unusual Cycloadducts from the Dipolar Cycloaddition of AllenylPerfluoroalkyl Sulfones to Nitrones / X.-J. Wang, J.-T. Liu // Chinese J. Chem. – 2007. – Vol.25. – P. 649-652.151[154] Kapur, A. Domino routes to substituted benzoindolizines: tandem reorganization of 1,3dipolar cycloadducts of nitrones with allenic esters/ketones and alternative cycloaddition–palladium catalyzed cyclization pathway / A. Kapur, K.
Kumar, L. Singh, P. Singh, M. Elango,V. Subramanian, V. Gupta, P. Kanwal, M. P. S. Ishar // Tetrahedron. – 2009. – Vol. 65. – P.4593-4603.[155] Anderson, L. L. Cascade Reactions of Nitrones and Allenes for the Synthesis of IndoleDerivatives / L. L. Anderson, M. A. Kroc, T. W. Reidl, J. Son // J. Org. Chem.
– 2016. – Vol. 81.– P. 9521-9529.[156] Молчанов, A. П. Региоселективное Циклоприсоединение C,N-Диарилнитронов карилалленам и N-Арил-C-карбамоилнитронов к Метил 2,3-Бутадиеноату / A. П. Молчанов,Ю. В. Малинина, Р. Р. Костиков, A. В. Степаков // ЖОрХ. – 2015. – Т. 51. – С. 384-388.[157] Malinina, J. [3+2] Cycloaddition reactions of arylallenes with C-(N-arylcarbamoyl)- andC,C-bis(methoxycarbonyl)nitrones and subsequent rearrangements / J. Malinina, T. Q. Tran, A.V.
Stepakov, V. V. Gurzhiy, G. L. Starova, R. R. Kostikov, A. P. Molchanov // Tetrahedron Lett.– 2014. – Vol. 55. – P. 3663-3666.[158] Padwa, A. Heterocyclic Synthesis via the Reaction of Nitrones and Hydroxylamines withSubstituted Allenes / A. Padwa, W. H. Bullock, D. N. Kline, J. Perumattam // J.
Org. Chem. –1989. – Vol. 54. – P. 2862-2869.[159] Aversa, M. C. Reaction of Azomethine Oxides with Allenes: a New Synthesis of 3Pyrrolidinones / M. C. Aversa, G. Cum, N. Uccella // Chem. Commun. – 1971. – P. 156-157.[160] Cum, G. Cycloaddition Reactions of Cumulenes. Part IV. A Novel Mode of Reaction ofAzomethine Oxides with 1,1-DimethylaIlene; Formation of a Substituted Piperidin-4-one / G.Cum, G. Sindona, N. Uccella // J.C.S.
Perkin I. – 1976. – P. 719-721.[161] Piperno, A. A Novel Class of Modified Nucleosides: Synthesis of AlkylideneIsoxazolidinyl Nucleosides Containing Thymine / A. Piperno, A. Rescifina, A. Corsaro, M. A.Chiacchio, A. Procopio, R. Romeo // Eur.
J. Org. Chem. – 2007. – P. 1517-1521.[162] Chiacchio, U. Synthesis of Methyleneisoxazolidine Nucleoside Analogues by MicrowaveAssisted Nitrone Cycloaddition / U. Chiacchio, A. Corsaro, D. Iannazzo, A. Piperno, G. Romeo,M. G. Saita, A. Rescifina // Eur. J. Org. Chem. – 2007. – P. 4758-4764.[163] Broggini, G. New Mechanistic Evidence on the Reaction between Sulfonylallenes andNitrile Oxides / G. Broggini, G. Molteni, G. Zecchi // J. Org.
Chem. – 1994. – Vol. 59. – P.8271-8274.[164] Bruché, L. 1,3-Dipolar Cycloadditions of 3,5-Dichloro-2,4,6-trimethylbenzonitrile Oxideto (Phenylsulfony1)allenes / L. Bruché, M. L. Gelmi, G. Zecchi // J. Org. Chem. – 1985. – Vol.50. – P. 3206-3208.152[165] Padwa, A. Site Selectivity in the Reactions of Various 1,3-Dipoles with (Phenylsulfony1)1,2-propadiene/ A. Padwa, S. P. Craig, U. Chiacchio, D. N. Kline // J. Org.
Chem. – 1988. – Vol.53. – P. 2232-2238.[166] Broggini, G. 1,3-Dipolar Cycloadditions to Nitrogen-substituted Allenes / G. Broggini, L.Bruché, G. Zecchi, T. Pilati // J.C.S. Perkin I. – 1990. – P. 533-539.[167] Beltrame, P. 1,3-Cycloadditions of 3,5-Dichloro-2,4,6-trimethylbenzonitrile Oxide to 1,1Diphenylallene. A Reinvestigation / P. Beltrame, P.
L. Beltrame, M. G. Cattania, G. Zecchi //J.C.S. Perkin I. – 1974. – P. 1301-1303.[168] Pocar, D. 5-Amino-4,5-dihydroisoxazoles. Part II (I). Reactions of 5-Amino-3-aryl-4methylene-4,5-dihydroisoxazoles with Nucleophiles / D. Pocar, L. M. Rossi, F. Scorca, P.Trimarco // J. Heterocyclic Chem.
– 1980. – Vol. 17. – P. 887-890.[169]Baltrame,P.3,3'-Diaryl-5-morpholino-4,5,4',5'-tetrahydro-4,5'-spirobi[isoxazoles].Synthesis by Cycloaddition Reactions and Substituent Effect on the Cycloaddition Kinetics / P.Baltrame, G. Gelli // J. Heterocyclic Chem. – 1986. – Vol. 23. – P. 1539-1543.[170] Borggini, G.
Site-Selective and Regioselective Cycloaddition of N-Propadienylanilineswith Nitrile Oxides. Claisen-Type Rearrangement of the Cycloadducts / G. Borggini, G.Zecchi //J.C.S. Perkin I. – 1991. – P. 1843-1846.153Приложения154155156157158159160161162163164165166167168169170.