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乙炔促进的大环化的硫醇-炔点击化学。

Thiol-Yne click chemistry of acetylene-enabled macrocyclization.

机构信息

Key Laboratory of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, China.

出版信息

Nat Commun. 2022 Aug 25;13(1):5001. doi: 10.1038/s41467-022-32723-0.

Abstract

Macrocycles have fascinated scientists for over half a century due to their aesthetically appealing structures and broad utilities in chemical, material, and biological research. However, the efficient preparation of macrocycles remains an ongoing research challenge in organic synthesis because of the high entropic penalty involved in the ring-closing process. Herein we report a photocatalyzed thiol-yne click reaction to forge diverse sulfur-containing macrocycles (up to 35-membered ring) and linear C2-linked 1,2-(S-S/S-P/S-N) functionalized molecules, starting from the simplest alkyne, acetylene. Preliminary mechanistic experiments support a visible light-mediated radical-polar crossover dihydrothiolation process. This operationally straightforward reaction is also amenable to the synthesis of organometallic complexes, bis-sulfoxide ligand and a pleuromutilin antibiotic drug Tiamulin, which provides a practical route to synthesize highly valued compounds from the feedstock acetylene gas.

摘要

大环化合物因其在化学、材料和生物研究中的广泛应用而引起了科学家们半个多世纪的关注。然而,由于环闭过程中涉及的高熵罚,大环化合物的高效制备仍然是有机合成中的一个持续研究挑战。在此,我们报告了一种光催化硫醇-炔点击反应,该反应可从最简单的炔烃乙炔出发,构建多种含硫的大环化合物(高达 35 元环)和线性 C2 连接的 1,2-(S-S/S-P/S-N)官能化分子。初步的机理实验支持可见光介导的自由基-极性交叉二氢硫醇化过程。这种操作简单的反应也适用于金属有机配合物、双砜配体和倍半萜类抗生素药物泰妙菌素的合成,为从乙炔原料气合成高价值化合物提供了一条实用途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2631/9411599/7c181aa76aa8/41467_2022_32723_Fig1_HTML.jpg

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