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硒-π-酸催化促进的 N-丙炔酰胺的光催化有氧环化反应。

Photocatalytic Aerobic Cyclization of N-Propargylamides Enabled by Selenium-π-Acid Catalysis.

机构信息

School of Pharmacy, Nantong University, 19 Qixiu Road, Nantong, 226001, P. R. China.

出版信息

Chemistry. 2023 Jun 22;29(35):e202300530. doi: 10.1002/chem.202300530. Epub 2023 May 5.

Abstract

A dual catalytic approach combining photocatalyst and selenium-π-acid synergy has been used to cyclized of N-propargylamides. This method offers readily access to oxazole aldehydes under chemical oxidant-free conditions with low catalyst loadings, where air acts as a terminal and gratuitous oxidant. The reaction is demonstrated with a range of substrates, including aryl and alkyl propargyl amides, and in the late-stage functionalization of several amide-containing drug molecules. Mechanistic studies suggest that the acridinium catalyst is able to oxidize diselenide and generate singlet oxygen ( O ), which is responsible for this transformation.

摘要

双催化策略结合光催化剂和硒-π-酸协同作用,用于环化 N-炔丙酰胺。该方法在低催化剂负载量、无化学氧化剂的条件下,通过空气作为终端和无偿氧化剂,简便地得到恶唑醛。该反应适用于多种底物,包括芳基和烷基炔丙酰胺,并能在酰胺类药物分子的后期官能化阶段进行。机理研究表明,吖啶鎓催化剂能够氧化二硒醚并生成单线态氧( 1 O 2 ),这是该转化的关键。

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