Max-Planck-Institut für Kohlenforschung, Mülheim an der Ruhr, Germany.
Institute of Organic Chemistry, RWTH Aachen University, Aachen, Germany.
Nat Chem. 2022 Aug;14(8):898-904. doi: 10.1038/s41557-022-00997-y. Epub 2022 Jul 25.
Intramolecular cyclization of nitrogen-containing molecules onto pendant alkenes is an efficient strategy for the construction of N-heterocycles, which are of paramount importance in, for example, pharmaceuticals and materials. Similar intermolecular cyclization reactions, however, are scarcer for nitrogen building blocks, including N-centred radicals, and divergent and modular versions are not established. Here we report the use of sulfilimines as bifunctional N-radical precursors for cyclization reactions with alkenes to produce N-unprotected heterocycles in a single step through photoredox catalysis. Structurally diverse sulfilimines can be synthesized in a single step, and subsequently engage with alkenes to afford synthetically valuable five-, six- and seven-membered heterocycles. The broad and diverse scope is achievable by a radical-polar crossover annulation enabled by the bifunctional character of the reagents, which distinguishes itself from all other N-centred-radical-based reactions. The modular synthesis of the sulfilimines allows for larger structural diversity of N-heterocycle products than is currently achievable with other single cyclization methods.
氮杂分子在烯属挂臂上的分子内环化是构建 N-杂环的有效策略,这些杂环在药物和材料等方面具有至关重要的意义。然而,对于氮砌块,包括 N-中心自由基,类似的分子间环化反应则较为稀缺,并且尚未建立起多样化和模块化的版本。在这里,我们报告了使用亚磺酰亚胺作为双功能 N-自由基前体,通过光氧化还原催化与烯烃进行环化反应,以一步法生成未保护的 N-杂环。结构多样的亚磺酰亚胺可以通过一步合成得到,并且随后与烯烃反应,生成具有合成价值的五、六和七元杂环。这种广泛而多样化的范围是通过试剂的双功能性质实现的自由基-极性交叉环加成来实现的,这使其有别于所有其他基于 N-中心自由基的反应。亚磺酰亚胺的模块化合成允许 N-杂环产物具有比其他单环化方法更大的结构多样性。