Liu Yaowen, Dietl Martin C, Han Chunyu, Rudolph Matthias, Rominger Frank, Krämer Petra, Hashmi A Stephen K
Organisch Chemisches Institut, Heidelberg University, Im Neuenheimer Feld 270, 69120 Heidelberg, Germany.
Chemistry Department, Faculty of Science, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Org Lett. 2022 Oct 7;24(39):7101-7106. doi: 10.1021/acs.orglett.2c02161. Epub 2022 Sep 22.
Multisubstituted alkenes are accessible by a gold-catalyzed acyloxyalkynylation of ynamides with ethynylbenziodoxolones (EBXs) with perfect atom-economy. The EBX reagents transfer both the carboxylate as well as the alkynyl entity. Overall, this cascade comprises the in situ generation of an alkynyl gold(III) species, a stereoselective C(sp)-C(sp) bond formation, and a C-O coupling at the alkynyl position of the ynamides. This reaction proceeds under mild conditions and accepts a wide range of substrates. A number of tetrasubstituted amide enol 2-iodobenzoates bearing different functional groups were obtained in good to excellent yields. DFT calculations explain the observed regioselectivity. The synthetic potential of the reaction was further demonstrated by a number of selected follow-up transformations.
多取代烯烃可通过金催化的烯酰胺与乙炔基苯并碘恶唑酮(EBXs)的酰氧基炔基化反应以完美的原子经济性得到。EBX试剂既转移羧酸盐又转移炔基部分。总体而言,该串联反应包括原位生成炔基金(III)物种、立体选择性的C(sp)-C(sp)键形成以及在烯酰胺的炔基位置的C-O偶联。该反应在温和条件下进行,并且能接受多种底物。以良好至优异的产率得到了一系列带有不同官能团的四取代酰胺烯醇2-碘苯甲酸酯。密度泛函理论(DFT)计算解释了观察到的区域选择性。通过一些选定的后续转化进一步证明了该反应的合成潜力。