Guangdong Provincial Key Laboratory of Chiral Molecule and Drug Discovery, School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou, 510006, China.
Organisch-Chemisches Institut, Heidelberg University, 69120, Heidelberg, Germany.
Nat Commun. 2021 Feb 19;12(1):1182. doi: 10.1038/s41467-021-21335-9.
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.
金属卡宾是一种活性的合成中间体,在合成化学中具有广泛的应用。尽管已经披露了多种催化方法用于从不同前体制备卡宾物种,但人们对开发高效、实用的方法以原位形成具有结构多样性和未揭示反应性的金属卡宾中间体的需求日益增加。在此,我们报道了一种金催化的级联反应方案,可在温和的反应条件下高产率地构建多环碳环骨架。机理研究表明,通过金促进的 6-endo-dig 叠氮炔环化生成的独特的β-芳基金卡宾物种是该反应的关键中间体,随后与外部烯烃进行[4 + 2]-环加成。与已有文献报道的金属卡宾环加成反应相比,这种卡宾中间体在环加成反应中充当 4-C 合成子。通过温和的氧化程序,可从最初生成的产物中轻易获得多种难以获得的具有多个取代基的富勒烯稠环烃(CPH)。