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      Gold(I)-catalyzed intramolecular cyclization/intermolecular cycloaddition cascade as a fast track to polycarbocycles and mechanistic insights

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          Abstract

          Metal carbene is an active synthetic intermediate, which has shown versatile applications in synthetic chemistry. Although a variety of catalytic methods have been disclosed for the generation of carbene species from different precursors, there is an increasing demand for the development of efficient and practical approaches for the in-situ formation of metal carbene intermediates with structural diversity and unrevealed reactivity. Herein we report a gold-catalyzed cascade protocol for the assembly of polycarbocyclic frameworks in high yields under mild reaction conditions. Mechanistic studies indicate that the unique β-aryl gold-carbene species, generated via gold-promoted 6- endo- dig diazo-yne cyclization, is the key intermediate in this reaction, followed by a [4 + 2]-cycloaddition with external alkenes. In comparison to the well-documented metal carbene cycloadditions, this carbene intermediate serves as a 4-C synthon in a cycloaddition reaction. A variety of elusive π-conjugated polycyclic hydrocarbons (CPHs) with multiple substituents are readily accessible from the initially generated products by a mild oxidation procedure.

          Abstract

          Metal carbene is usually employed as a 1-carbon synthon or 3-carbon synthon in a variety of cycloaddition reactions. Here, the authors report a gold-catalyzed cascade protocol for the assembly of polycarbocyclic frameworks via a β-aryl gold-carbene intermediate which reacts as a 4-carbon synthon with alkenes in [4 + 2]-cycloadditions.

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          Homogeneous Gold Catalysis Beyond Assumptions and Proposals-Characterized Intermediates

          A. Hashmi (2010)
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            Modern Organic Synthesis with α-Diazocarbonyl Compounds.

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              Catalytic C-H functionalization by metal carbenoid and nitrenoid insertion.

              Novel reactions that can selectively functionalize carbon-hydrogen bonds are of intense interest to the chemical community because they offer new strategic approaches for synthesis. A very promising 'carbon-hydrogen functionalization' method involves the insertion of metal carbenes and nitrenes into C-H bonds. This area has experienced considerable growth in the past decade, particularly in the area of enantioselective intermolecular reactions. Here we discuss several facets of these kinds of C-H functionalization reactions and provide a perspective on how this methodology has affected the synthesis of complex natural products and potential pharmaceutical agents.
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                Author and article information

                Contributors
                hashmi@hashmi.de
                xuxinfang@mail.sysu.edu.cn
                Journal
                Nat Commun
                Nat Commun
                Nature Communications
                Nature Publishing Group UK (London )
                2041-1723
                19 February 2021
                19 February 2021
                2021
                : 12
                : 1182
                Affiliations
                [1 ]GRID grid.12981.33, ISNI 0000 0001 2360 039X, Guangdong Provincial Key Laboratory of Chiral Molecule and Drug Discovery, School of Pharmaceutical Sciences, , Sun Yat-sen University, ; Guangzhou, 510006 China
                [2 ]GRID grid.7700.0, ISNI 0000 0001 2190 4373, Organisch-Chemisches Institut, , Heidelberg University, ; 69120 Heidelberg, Germany
                Author information
                http://orcid.org/0000-0002-6720-8602
                Article
                21335
                10.1038/s41467-021-21335-9
                7896061
                33608521
                b36ef593-a1b0-479e-834e-179cba217e92
                © The Author(s) 2021

                Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.

                History
                : 12 October 2020
                : 15 January 2021
                Funding
                Funded by: FundRef https://doi.org/10.13039/501100001809, National Natural Science Foundation of China (National Science Foundation of China);
                Award ID: 21971262
                Award Recipient :
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                © The Author(s) 2021

                Uncategorized
                catalytic mechanisms,optical materials,reaction mechanisms,synthetic chemistry methodology

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