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Multistep Synthesis of Organic Selenides under Visible Light Irradiation: A Continuous-Flow Approach

机译:可见光照射下有机硒化物的多体合成:连续流动方法

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The potential application of multistep continuous-flow systems has had a great impact on the syntheses of active pharmaceutical ingredients, natural products, and commodity chemicals. In this report, the highly efficient combination of a chemical reduction and a photochemical C-sp2-H activation reaction for selenylation of biologically relevant electron-rich arenes was achieved by means of a continuous-flow process. First, the reduction of alkyl and aryl selenocyanates by Rongalite was achieved giving the corresponding diselenides; second, the photoactivation of the Se-Se bond resulted in the selenylation of electron-rich arenes, both steps from good to excellent yields. In all cases, the reaction time was shortened, and isolated yields were improved when compared to batch reaction conditions. Furthermore, connecting both reactions in a multistep continuous-flow sequence was possible even when reductive and photooxidative transformations were coupled.
机译:MultiSep连续流动系统的潜在应用对活性药物成分,天然产品和商品化学品的合成产生了很大的影响。 在本报告中,通过连续流程方法实现了化学还原和光化学C-SP2-H活化反应的高效组合,用于生物学相关电子富植物的烯烯化。 首先,实现芳酸盐的烷基和芳基苯胺酯的还原,得到相应的二烯醇; 其次,SE-SE键的光激活导致富含电子的苯乙烯化,两步从良好到优异的产率。 在所有情况下,与分批反应条件相比,缩短了反应时间,分离的产率得到改善。 此外,即使在还原和光氧化转化偶联时,也可以在多步骤连续流序列中连接两种反应。

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