Background: Transition metal-catalyzed reactions of alkynyl halides are a versatile means of synthesizing a wide array of products. Their use is of particular interest in cycloaddition reactions and in constructing new carbon-carbon and carbon-heteroatom bonds. Transition metal-catalyzed reactions of alkynyl halides have successfully been used in [4+2], [2+2], [2+2+2] and [3+2] cycloaddition reactions. Many carbon-carbon coupling reactions take advantage of metal-catalyzed reactions of alkynyl halides, including Cadiot-Chodkiewicz, Suzuki-Miyaura, Stille, Kumada-Corriu and Inverse Sonogashira reactions. All the methods of constructing carbon-nitrogen, carbon-oxygen, carbon-phosphorus, carbon-sulfur, carbon-silicon, carbon-selenium and carbon-tellurium bonds employed alkynyl halides.
Objective: The purpose of this review is to highlight and summarize research conducted in transition metalcatalyzed reactions of alkynyl halides in recent years. The focus will be placed on cycloaddition and coupling reactions, and their scope and applicability to the synthesis of biologically important and industrially relevant compounds will be discussed.
Conclusion: It can be seen from the review that the work done on this topic has employed the use of many different transition metal catalysts to perform various cycloadditions, cyclizations, and couplings using alkynyl halides. The reactions involving alkynyl halides were efficient in generating both carbon-carbon and carbonheteroatom bonds. Proposed mechanisms were included to support the understanding of such reactions. Many of these reactions face retention of the halide moiety, allowing additional functionalization of the products, with some new products being inaccessible using their standard alkyne counterparts.
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http://dx.doi.org/10.2174/1570179416666190329200616 | DOI Listing |
Angew Chem Int Ed Engl
February 2025
Technion Israel Institute of Technology, Schulich Faculty of Chemistry, Technion City, 3200008, Haifa, ISRAEL.
The Michael addition of unactivated nitriles to α,β-unsaturated ketones is a challenging yet desirable strategy for installing alkyl cyano-groups (R-CN) in organic molecules. However, despite formidable efforts, using acetonitrile as a Michael donor in these reactions has remained a significant challenge. Herein, we report a highly active manganese(I) complex [(PCNHCP)Mn(CO)2H] (1), which chemoselectively catalyzes the 1,4-addition of unactivated nitriles (incl.
View Article and Find Full Text PDFJ Am Chem Soc
February 2025
Georgetown University, Chemistry Department, Washington, D.C. 20057, United States.
The unique properties of fluorinated organic compounds have received intense interest and have conquered a myriad of applications in the chemical and pharmaceutical sciences. Today, an impressive range of alkyl fluorides are commercially available, and there are many practical methods to make them exist. However, the unmatched stability and inertness of the C-F bond have largely limited its synthetic value, which is very different from the widely accepted utility of alkyl chlorides, bromides, and iodides that serve everyday as "workhorse" building blocks in countless carbon-carbon bond forming reactions.
View Article and Find Full Text PDFOrg Biomol Chem
January 2025
Department of Chemistry, CMS College Kottayam (Autonomous), Kottayam, Kerala, 686001, India.
The Suzuki-Miyaura Coupling (SMC) reaction is a powerful method for forming carbon-carbon bonds in organic synthesis. Recent advancements in SMC reactions have introduced first-row transition metal catalysts, with zinc garnering significant interest due to its cost-effective and eco-friendly nature. Despite progress in experimental protocols, the mechanistic details of zinc-catalyzed SMC reactions are limited.
View Article and Find Full Text PDFOrg Lett
December 2024
College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.
We herein describe a formal 1,1-hydrocyanation reaction of alkynyl halides with isocyanides enabled by a dual nickel/base catalysis relay. -Butyl isocyanide serves as a "HCN" precursor that is introduced to the α-position of alkynyl halides, and the halogen atom is moved to the β-position. As a result, a series of ()-3-bromo/iodo acrylonitrile derivatives could be obtained in moderate yields.
View Article and Find Full Text PDFChem Sci
October 2024
Institute of Organic Chemistry, RWTH Aachen University Landoltweg 1 Aachen 52056 Germany
Alkynes are a crucial class of materials with application across the wide range of chemical disciplines. The alkynylation of alkyl halides presents an ideal strategy for assembling these materials. Current methods rely on the intrinsic electrophilic nature of alkyl halides to couple with nucleophilic acetylenic systems, but these methods faces limitations in terms of applicability and generality.
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