School of Chemical Engineering and Light Industry, Guangdong University of Technology , No.100, West Waihuan Road, HEMC, Panyu District, Guangzhou 510006, China.
Department of Chemistry, Graduate School of Science, Kyoto University , Sakyo, Kyoto 606-8502, Japan.
J Org Chem. 2017 Nov 17;82(22):11865-11871. doi: 10.1021/acs.joc.7b01555. Epub 2017 Aug 29.
Reported herein are practical approaches for the chemoselective mono-, di-, and tri-iodination of alkynes based on efficient oxidative iodinations catalyzed by hypervalent iodine reagents. The reaction conditions were systematically optimized by altering the iodine source and/or the hypervalent iodine reagent system. The tetrabutylammonium iodide (TBAI)/(diacetoxyiodo)benzene (PIDA) system is specific for monoiodination, while the KI/PIDA system results in di-iodination. Combining the TBAI/PIDA and KI/PIDA systems in one pot provided the corresponding tri-iodination products efficiently. These reaction conditions can be applied to the synthetically important iodination of aromatic and aliphatic alkynes, which was accomplished in good yield (up to 99%) and excellent chemoselectivity. These synthetic methods can also be applied to the efficient chemoselective synthesis of iodoalkyne derivatives, intermediates, and related biologically active compounds.
本文报道了基于高价碘试剂催化的有效氧化碘化反应,实现炔烃的化学选择性单、二、三碘化的实用方法。通过改变碘源和/或高价碘试剂体系,系统优化了反应条件。四丁基碘化铵(TBAI)/二乙酰氧基碘苯(PIDA)体系专用于单碘化,而碘化钾/ PIDA 体系导致二碘化。将 TBAI/PIDA 和 KI/PIDA 体系在一锅反应中组合使用,可高效得到相应的三碘化产物。这些反应条件可应用于具有合成重要性的芳基和脂肪族炔烃的碘化反应,产率高(高达 99%),化学选择性好。这些合成方法也可应用于碘代炔烃衍生物、中间体和相关生物活性化合物的高效化学选择性合成。