Mosiagin Ivan, Fernandes Anthony J, Budinská Alena, Hayriyan Liana, Ylijoki Kai E O, Katayev Dmitry
Department of Chemistry, University of Fribourg, Chemin du Musée 9, 1700, Fribourg, Switzerland.
Department of Chemistry, Biochemistry, and Pharmaceutical Sciences, University of Bern, Freiestrasse 3, 3012, Bern, Switzerland.
Angew Chem Int Ed Engl. 2023 Oct 9;62(41):e202310851. doi: 10.1002/anie.202310851. Epub 2023 Sep 4.
Nitroaromatic compounds represent one of the essential classes of molecules that are widely used as feedstock for the synthesis of intermediates, the preparation of nitro-derived pharmaceuticals, agrochemicals, and materials on both laboratory and industrial scales. We herein disclose the efficient, mild, and catalytic ipso-nitration of organotrimethylsilanes, enabled by an electrophilic N-nitrosaccharin reagent and allows chemoselective nitration under mild reaction conditions, while exhibiting remarkable substrate generality and functional group compatibility. Additionally, the reaction conditions proved to be orthogonal to other common functionalities, allowing programming of molecular complexity via successive transformations or late-stage nitration. Detailed mechanistic investigation by experimental and computational approaches strongly supported a classical electrophilic aromatic substitution (S Ar) mechanism, which was found to proceed through a highly ordered transition state.
硝基芳香化合物是一类重要的分子,广泛用作中间体合成的原料,用于在实验室和工业规模上制备硝基衍生的药物、农用化学品和材料。我们在此公开了一种高效、温和且具有催化作用的有机三甲基硅烷的原位硝化反应,该反应由亲电N-亚硝基糖精试剂实现,能够在温和的反应条件下进行化学选择性硝化,同时展现出显著的底物通用性和官能团兼容性。此外,该反应条件被证明与其他常见官能团互不干扰,能够通过连续转化或后期硝化来构建分子复杂性。通过实验和计算方法进行的详细机理研究有力地支持了经典的亲电芳香取代(S Ar)机理,该机理通过高度有序的过渡态进行。