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一种通过流动体系中氢原子转移光催化制备五元杂环和碳环的递缩策略。

A Telescoped Strategy for the Preparation of Five-Membered Hetero- and Carbocycles via Hydrogen Atom Transfer Photocatalysis in Flow.

作者信息

Sacchelli Filippo, Quadri Elena, Raineri Luna, Jorea Alexandra, Pessina Marzia, Lo Presti Anna, Della Ca' Nicola, Ravelli Davide, Capaldo Luca

机构信息

SynCat Lab, Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parco Area delle Scienze 17/A, 43124, Parma, Italy.

PhotoGreen Lab, Department of Chemistry, University of Pavia, viale Taramelli 12, 27100, Pavia, Italy.

出版信息

ChemSusChem. 2025 Aug 6;18(16):e202501012. doi: 10.1002/cssc.202501012. Epub 2025 Jul 12.

Abstract

Five-membered heterocycles such as pyrroles and thiophenes, along with cyclopentenones, are key scaffolds in pharmaceutical chemistry. However, the synthesis of these motifs via diversity oriented synthesis is hindered by the limited accessibility of unsymmetrical 1,4-diketones. Herein, a practical and sustainable flow protocol is presented for the telescoped synthesis of pyrroles, thiophenes, and cyclopentenones. The process begins with decatungstate-photocatalyzed hydrogen atom transfer from aldehydes to generate acyl radicals, which undergo regioselective addition to functionalized enones. The resulting diketones are then fed into a second reactor-tubular or packed-bed-to undergo Paal-Knorr or Hunsdiecker condensation reactions. This modular strategy enables rapid access to densely substituted, biorelevant hetero- and carbocycles with unconventional substitution patterns, as demonstrated by the synthesis of tri-, tetra-, and pentasubstituted pyrroles and thiophenes, and mono-, di-, and trisubstituted cyclopentenones.

摘要

吡咯和噻吩等五元杂环以及环戊烯酮是药物化学中的关键骨架。然而,通过多样化导向合成这些结构单元受到不对称1,4 - 二酮可及性有限的阻碍。本文介绍了一种实用且可持续的连续流动方法,用于吡咯、噻吩和环戊烯酮的串联合成。该过程始于十钨酸盐光催化的醛氢原子转移以生成酰基自由基,这些自由基对官能化烯酮进行区域选择性加成。然后将所得的二酮输入第二个反应器——管式或填充床式——以进行帕尔 - 克诺尔或洪斯迪克尔缩合反应。这种模块化策略能够快速获得具有非常规取代模式的高度取代的、与生物相关的杂环和碳环,三、四和五取代的吡咯和噻吩以及单、二和三取代的环戊烯酮的合成证明了这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fec8/12330334/3a9bb0cdd481/CSSC-18-e202501012-g004.jpg

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