Spiro N-heterocycles, particularly aza-spiro piperidines, have shown significant promise in pharmaceutical applications due to their ability to enhance physicochemical properties. Despite their potential, the preparation of these complex structures poses significant challenges. To address this, we propose a one-pot dearomative spirocyclization reaction of ynamides. This method involves a copper-catalyzed carbomagnesiation reaction, achieving chemo-, regio-, and stereoselective formation of vinyl metal intermediates. Upon the addition of a Lewis acid, these intermediates undergo a regioselective nucleophilic dearomatization event, facilitating the synthesis of diverse aza-spiro dihydropyridine scaffolds with multiple functional handles. Various Grignard reagents, diverse ynamides, and acylating reagents have been explored. A subsequent hydrogenation reaction provides access to both partially and fully reduced spirocyclic frameworks, broadening the scope of spirocyclic structures with potential medicinal applications.
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http://dx.doi.org/10.1039/d4sc05541a | DOI Listing |
J Org Chem
January 2025
Department of Chemistry, Central University of Punjab, Bathinda 151401, India.
Visible-light-driven metal- and photocatalyst-free cascade 1,4-HAT and dearomative spirocyclization of -benzylacrylamides are described for sustainable synthesis of a variety of pharmaceutically important γ-ketoamides and 2-Azaspiro[4.5]decanes in one pot in good to excellent yields. Readily accessible and nontoxic materials, expensive Ir or Ru photocatalyst-free mild conditions, excellent functional group tolerance, operational simplicity, and scalability enhance the practical value of this protocol.
View Article and Find Full Text PDFChem Asian J
January 2025
Indian Institute of Technology Guwahati, Chemistry, Department of Chemistry, Indian Institute of Technology Guwahati, 781039, Guwahati, INDIA.
Ferric chloride mediated dearomative spirocyclization of biaryl ynones for the synthesis of new series of densely functionalized 3,3-spiroindanone derivatives has been reported. This study is the first to describe the regioselective synthesis of a five-membered ring from biaryl ynones. The scope of the reaction is broad and the spirocyclic products were obtained in moderate to good yields (up to 87%) and with high stereoselectivities.
View Article and Find Full Text PDFChem Sci
October 2024
Institute of Chemistry, Casali Center of Applied Chemistry, The Hebrew University of Jerusalem Jerusalem 9190401 Israel
Spiro N-heterocycles, particularly aza-spiro piperidines, have shown significant promise in pharmaceutical applications due to their ability to enhance physicochemical properties. Despite their potential, the preparation of these complex structures poses significant challenges. To address this, we propose a one-pot dearomative spirocyclization reaction of ynamides.
View Article and Find Full Text PDFChemistry
January 2025
Département de Chimie and Centre de Recherche sur les Matériaux Avancés (CERMA), Université Laval, Pavillon A.-Vachon, 1045 Ave de la Médecine, Québec, G1 V 0 A6, Canada E-mail.
Organic dyes are interesting building blocks for the preparation of organic semiconductors as they possess synthetic handles that can be used to functionalize them and, consequently, change their electronic properties. However, reactions to extend their π-conjugated framework through ring annulation have only been scarcely tested. Herein, we report the use of alkyne benzannulation on 2,8-dibromo-dibenzo[def,mno]chrysene (vat orange 3) and 2,9-dibromo-dibenzo[b,def]chrysene (vat orange 1) to extend the conjugation and reduce their bandgap.
View Article and Find Full Text PDFOrg Lett
October 2024
Guangxi Key Laboratory of Drug Discovery and Optimization, Guangxi Engineering Research Center for Pharmaceutical Molecular Screening and Druggability Evaluation, Key Laboratory of Medical and Translational Medicine, School of Pharmacy, Guilin Medical University, Guilin 541199, People's Republic of China.
An electrochemical cyclization/spirocyclization hydroarylation via reductive dearomatization of a series of nonactivated arenes including -substituted indoles, indole-3-carboxamide derivatives, and iodo-substituted benzamides is described. This protocol boasts high atom efficiency, broad substrate applicability, and excellent selectivity. Utilizing a simple undivided cell, various nonactivated arenes undergo cyclization/spirocyclization through the intramolecular addition of aryl radicals to an aromatic ring, yielding 50 indolines, spirocyclizative hydroarylation products, and phenanthridinones.
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