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由原料化学品和元素硫直接合成硫酯

Direct Synthesis of Thioesters from Feedstock Chemicals and Elemental Sulfur.

作者信息

Tang Haidi, Zhang Muliang, Zhang Yuchao, Luo Penghao, Ravelli Davide, Wu Jie

机构信息

Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543, Singapore.

National University of Singapore (Suzhou) Research Institute, Suzhou 215123, China.

出版信息

J Am Chem Soc. 2023 Mar 15;145(10):5846-5854. doi: 10.1021/jacs.2c13157. Epub 2023 Feb 28.

Abstract

The development of a mild, atom- and step-economical catalytic strategy that effectively generates value-added molecules directly from readily available commodity chemicals is a central goal of organic synthesis. In this context, the thiol-ene click chemistry for carbon-sulfur (C-S) bond construction has found widespread applications in the synthesis of pharmaceuticals and functional materials. In contrast, the selective carbonyl thiyl radical addition to carbon-carbon multiple bonds remains underdeveloped. Herein, we report a carbonyl thiyl radical-based thioester synthesis through three-component coupling from feedstock aldehydes, alkenes, or alkynes and elemental sulfur by direct photocatalyzed hydrogen atom transfer. This method represents an orthogonal strategy to the conventional thiol-based nucleophilic substitution and exhibits a remarkably broad substrate scope ranging from simple commodity chemicals such as ethylene and acetylene to complex pharmaceutical molecules. This protocol can be easily extended to the synthesis of thiolactones, oligomer/polymers, and thioacids. Its synthetic utility has been demonstrated by a two-step synthesis of the drug esonarimod. Mechanistic studies indicate that the use of elemental sulfur to trap acyl radicals is both thermodynamically and kinetically favored, illustrating its great potential for the synthesis of sulfur-containing molecules.

摘要

开发一种温和、原子经济且步骤经济的催化策略,能够直接从易得的大宗商品化学品有效生成增值分子,是有机合成的核心目标。在此背景下,用于构建碳 - 硫(C - S)键的硫醇 - 烯点击化学已在药物和功能材料的合成中得到广泛应用。相比之下,羰基硫自由基对碳 - 碳多重键的选择性加成仍未充分发展。在此,我们报道了一种基于羰基硫自由基的硫酯合成方法,通过由原料醛、烯烃或炔烃与元素硫经直接光催化氢原子转移进行三组分偶联反应来实现。该方法是对传统基于硫醇的亲核取代反应的一种正交策略,并且展现出从诸如乙烯和乙炔等简单大宗商品化学品到复杂药物分子的极为广泛的底物范围。此方案可轻松扩展至硫内酯、低聚物/聚合物和硫代酸的合成。其合成实用性已通过药物埃索那立莫德的两步合成得以证明。机理研究表明,使用元素硫捕获酰基自由基在热力学和动力学上均有利,这表明其在含硫分子合成方面具有巨大潜力。

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