Transformation of 5-acylated N-fluoroalkyl-1,2,3-triazoles to trifluoromethylated ring-fused isoquinolines, 1,3-oxazines, and 1,3-oxazin-6-ones via ketenimines
Status PubMed-not-MEDLINE Jazyk angličtina Země Anglie, Velká Británie Médium electronic-ecollection
Typ dokumentu časopisecké články
PubMed
39193300
PubMed Central
PMC11348844
DOI
10.1039/d4ra04794j
PII: d4ra04794j
Knihovny.cz E-zdroje
- Publikační typ
- časopisecké články MeSH
A one-pot multistep methodology leading to trifluoromethylated cyclopenta[c]isoquinolines, indeno[1,2-c]isoquinolines, 6,6-difluoro-1,3-oxazines, or 1,3-oxazin-6-ones, based on the reaction of 5-acylated N-pentafluoroethyl-substituted 1,2,3-triazoles is presented. A thermal ring opening of the starting triazoles, followed by a 1,2-acyl shift formed reactive ketenimines which cyclized after a rearrangement in a substrate-specific manner to provide new trifluoromethylated heterocyclic products.
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Khadka D. B. Le Q. M. Yang S. H. Van H. T. M. Le T. N. Cho S. H. Kwon Y. Lee K. T. Lee E. S. Cho W. J. Design, Synthesis and Docking Study of 5-Amino Substituted Indeno[1,2-c]Isoquinolines as Novel Topoisomerase i Inhibitors. Biochem. Mol. Med. 2011;19:1924–1929. PubMed
Song P. Yu P. Lin J. S. Li Y. Yang N. Y. Liu X. Y. Transition-Metal-Free β-C-H Bond Carbonylation of Enamides or Amides with a Trifluoromethyl Group as CO Surrogate for the Synthesis of 1,3-Oxazin-6-Ones. Org. Lett. 2017;19:1330–1333. PubMed
Lalaev B. Y. Petina O. A. Kuz’mich N. N. Yakovlev I. P. Alekseeva G. M. Zakhs V. E. Potentiometric Study on Acid Properties of Some 4-Hydroxy-6H-1,3-Oxazin-6- Ones. Structure-Biological Activity Relationship. Russ. J. Gen. Chem. 2006;76:645–648.
Yang W. Zhou Z. Zhao Y. Luo D. Luo X. Luo H. Cui L. Li L. Copper Catalyzed Inverse Electron Demand [4+2] Cycloaddition Fot the Synthesis of Oxazines. Catalysts. 2022;12:526.
Gupta N. Saini V. Basavarajaiah S. M. Dar M. O. Das R. Dahiya R. S. 1,3-Oxazine as a Promising Scaffold for the Development of Biologically Active Lead Molecules. ChemistrySelect. 2023;8:1–18.
Campo M. A. Larock R. C. Synthesis of Fluoren-9-Ones via of o-Halobiaryls. Org. Lett. 2000;3:1999–2001. PubMed
Dusemund J. Kröger E. Ein 1,3-Indandion-Derivat Aus Phthalaldehyd. Arch. Pharm. 1987;320:617–620.
Halder P. Iqubal A. Mondal K. Mukhopadhyay N. Das P. Carbonylative Transformations Using a DMAP-Based Pd-Catalyst through Ex Situ CO Generation. J. Org. Chem. 2023;88:15218–15236. PubMed
Pham T. T. Chen X. Söhnel T. Yan N. Sperry J. Haber-Independent, Diversity-Oriented Synthesis of Nitrogen Compounds from Biorenewable Chitin. Green Chem. 2020;22:1978–1984.
Janecký L. Markos A. Klepetářová B. Beier P. Lewis-Acid-Mediated Intramolecular Cyclization of 4-Aryl-5-Allyl-1,2,3-Triazoles to Substituted Cyclopentene Derivatives. J. Org. Chem. 2023;88:1155–1167. PubMed
Cainelli G. Giacomini D. Gazzano M. Galletti P. Quintavalla A. N-Acylation of 4-Alkylidene-b-Lactams: Unexpected Results. Tetrahedron Lett. 2003;44:6269–6272.
Zhu Y. M. Zhang W. Li H. Xu X. P. Ji S. J. Palladium Catalyzed Ring Expansion Reaction of Isoxazolones with Isocyanides: Synthesis of 1,3-Oxazin-6-One Derivatives. Adv. Synth. Catal. 2021;363:808–818.
Risitano B. F. Grassi G. Foti F. Caruso F. Vecchio G. L. Cannizzaro V. T. Ring-Enlargemen of Isoxazol-5-Ones to 1,3-Oxazin-6-Ones. J. Chem. Soc., Perkin Trans. 1979;24:1522–1524.
Beccalli E. M. Benincori T. Marchesini A. 1,3-Oxazin-6-Ones from 5(2H)-Isoxazolones. Synthesis. 1988;8:630–631.
Matsuda T. Yamanaka K. Tabata Y. Shiomi T. Synthesis of Trisubstituted 1,3-Oxazin-6-Ones via Base-Catalyzed Ring-Opening Annulation of Cyclopropenones with N-(Pivaloyloxy)Amides. Tetrahedron Lett. 2018;59:1458–1460.
Petina O. A. Yakovlev I. P. Geffken D. Preparation of Arylpropynamides and Their Reaction with Malonyl Acid Derivatives. Synthesis. 2013;45:803–809.
Wang J. Sánchez-Roselló M. Aceña J. L. del Pozo C. Sorochinsky A. E. Fustero S. Soloshonok V. A. Liu H. Fluorine in Pharmaceutical Industry: Fluorine-Containing Drugs Introduced to the Market in the Last Decade (2001–2011) Chem. Rev. 2014;114:2432–2506. PubMed
Gillis E. P. Eastman K. J. Hill M. D. Donnelly D. J. Meanwell N. A. Applications of Fluorine in Medicinal Chemistry. J. Med. Chem. 2015;58:8315–8359. PubMed
Müller K. Faeh C. Diederich F. Fluorine in pharmaceuticals: looking beyond intuition. Science. 2007;317:1881–1886. PubMed
Fluorine in Pharmaceutical and Medicinal Chemistry, ed. V. Gouverneur and K. Müller, Imperial College Press, Ondon, 2012
Ogawa Y. Tokunaga E. Kobayashi O. Hirai K. Shibata N. Current contributions of Organofluorine Compounds to the Agrochemical Industry. iScience. 2020;23:101467. PubMed PMC
Jeschke P. Recent developments in fluorine-containing pesticides. Pest Manage. Sci. 2024;80:3065–3087. PubMed
Wang Q. Song H. Wang Q. Fluorine-containing agrochemicals in the last decade and approaches for fluorine incorporation. Chin. Chem. Lett. 2022;33:626–642.
Janecký L. Beier P. Lewis Acid-Mediated Transformations of 5-Acyl-N-Fluoroalkyl-1,2,3-Triazoles to Cyclopentenones, Indenones, or Oxazoles. RSC Adv. 2024;14:13640–13645. PubMed PMC
Blastik Z. E. Voltrová S. Matoušek V. Jurásek B. Manley D. W. Klepetářová B. Beier P. Azidoperfluoroalkanes: Synthesis and Application in Copper(I)-Catalyzed Azide–Alkyne Cycloaddition. Angew. Chem., Int. Ed. 2017;56:346–349. PubMed
Bakhanovich O. Beier P. Synthesis, Stability and Reactivity of α-Fluorinated Azidoalkanes. Chem.–Eur. J. 2020;26:773–782. PubMed
Markos A. Matoušek V. Beier P. Fluoroalkyl Azides and Triazoles: Unlocking a Novel Chemical Space. Aldrichim Acta. 2022;55:37–44.
Voltrová S. Muselli M. Filgas J. Matoušek V. Klepetářová B. Beier P. Synthesis of Tetrafluoroethylene-and Tetrafluoroethyl-Containing Azides and Their 1,3-Dipolar Cycloaddition as Synthetic Application. Org. Biomol. Chem. 2017;15:4962–4965. PubMed
Shaitanova E. Matoušek V. Herentin T. Adamec M. Matyáš R. Klepetářová B. Beier P. Synthesis and Cycloaddition Reactions of 1-Azido-1,1,2,2-Tetrafluoroethane. J. Org. Chem. 2023;88:14969–14977. PubMed PMC
Markos A. Janecký L. Chvojka T. Martinek T. Martinez-Seara H. Klepetářová B. Beier P. Haloalkenyl Imidoyl Halides as Multifacial Substrates in the Stereoselective Synthesis of N-Alkenyl Compounds. Adv. Synth. Catal. 2021;363:3258–3266.
Markos A. Voltrová S. Motornov V. Tichý D. Klepetářová B. Beier P. Stereoselective Synthesis of (Z)-β-Enamido Triflates and Fluorosulfonates from N-Fluoroalkylated Triazoles. Chem.–Eur. J. 2019;25:7640–7644. PubMed
Markos A. Janecký L. Klepetářová B. Pohl R. Beier P. Stereoselective Synthesis of (Z)-β-Enamido Fluorides from N-Fluoroalkyl- And N-Sulfonyl-1,2,3-Triazoles. Org. Lett. 2021;23:4224–4227. PubMed
Kubíčková A. Markos A. Voltrová S. Marková A. Filgas J. Klepetářová B. Slavíček P. Beier P. Aza-Wolff Rearrangement of N-Fluoroalkyl Triazoles to Ketenimines. Org. Chem. Front. 2023;10:3201–3206.
Kubíčková A. Voltrová S. Kleman A. Klepetářová B. Beier P. One-Pot Multistep Synthesis of 1-Fluoroalkylisoquinolines and Fused Fluoroalkylpyridines from N-Fluoroalkyl-1,2,3-Triazoles. Org. Chem. Front. 2024;11:4442–4448.
George L. Netsch K. P. Penn G. Kollenz G. Wentrup C. Oxoketene-Oxoketene, Imidoylketene-Imidoylketene and Oxoketenimine- Imidoylketene Rearrangements. 1,3-Shifts of Phenyl Groups. Org. Biomol. Chem. 2006;4:558–564. PubMed