首页> 外文期刊>Journal of the American Chemical Society >Enantioselective Radical Construction of 5-Membered Cyclic Sulfonamides by Metalloradical C-H Amination
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Enantioselective Radical Construction of 5-Membered Cyclic Sulfonamides by Metalloradical C-H Amination

机译:金属元C-H胺化对5-元环磺酰胺的对映选择性自由基

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摘要

Both arylsulfonyl and alkylsulfonyl azides can be effectively activated by the cobalt(II) complexes of D-2-symmetric chiral amidoporphyrins for enantioselective radical 1,5-C-H amination to stereoselectively construct 5-membered cyclic sulfonamides. In addition to C-H bonds with varied electronic properties, the Co(II)-based metalloradical system features chemoselective amination of allylic C-H bonds and is compatible with heteroaryl groups, producing functionalized 5-membered chiral cyclic sulfonamides in high yields with high enantioselectivities. The unique profile of reactivity and selectivity of the Co(II)-catalyzed C-H amination is attributed to its underlying stepwise radical mechanism, which is supported by several lines of experimental evidence.
机译:D-2-对称手性氨基卟啉的钴(II)配合物可以有效地活化芳基磺酰基叠氮化物和烷基磺酰基叠氮化物,用于对映选择性基团1,5-C-H胺化,以立体选择性地构建5元环磺酰胺。除了具有各种电子性质的C-H键外,基于Co(II)的金属铁体系还具有烯丙基C-H键的化学选择性胺化作用,并且与杂芳基相容,从而以高收率和高对映选择性生产官能化的5元手性环状磺酰胺。 Co(II)催化的C-H胺的反应性和选择性的独特特征归因于其潜在的逐步自由基机理,这由几行实验证据支持。

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