School of Chemistry and Chemical Engineering, Key Laboratory of Material Chemistry for Energy Conversion and Storage (Huazhong University of Science and Technology), Ministry of Education, Hubei Key Laboratory of Material Chemistry and Service Failure, Huazhong University of Science and Technology, Wuhan 430074, PR China.
J Org Chem. 2021 Jun 18;86(12):8333-8350. doi: 10.1021/acs.joc.1c00762. Epub 2021 May 30.
Exploring new protocols for efficient organic synthesis is crucial for pharmaceutical developments. The present work introduces a Pd(II)/LA-catalyzed (LA: Lewis acid) decarboxylative addition reaction for the synthesis of bis(indolyl)methane derivatives. The presence of Lewis acid such as Sc(OTf) triggered Pd(II)-catalyzed decarboxylative addition of propiolic acids with indoles to offer the bis(indolyl)methane derivatives in moderate to good yields, whereas neither Pd(II) nor Lewis acid alone was active for this synthesis. The catalytic efficiency of Pd(OAc) was highly dependent on the Lewis acidity of the added Lewis acid, that is, a stronger Lewis acid provided a higher yield of the bis(indolyl)methane derivatives. Meanwhile, this Pd(II)/LA-catalyzed decarboxylative addition reaction showed good tolerance toward versatile electron-rich or -deficient substituents on the indole skeleton and on the benzyl ring of propiolic acids. The studies on the in situ H NMR kinetics of this Pd(II)/Sc(III) catalysis disclosed the formation of a transient vinyl-Pd(II)/Sc(III) intermediate generated by the pyrrole addition to the alkynyl-Pd(II)/Sc(III) species after decarboxylation, which was scarcely observed before.
探索高效有机合成的新方案对于药物研发至关重要。本工作介绍了一种 Pd(II)/LA 催化(LA:路易斯酸)脱羧加成反应,用于合成双(吲哚基)甲烷衍生物。路易斯酸如 Sc(OTf) 的存在引发了 Pd(II)催化的丙炔酸与吲哚的脱羧加成反应,以中等至良好的收率提供了双(吲哚基)甲烷衍生物,而单独的 Pd(II)或路易斯酸对此合成均无活性。Pd(OAc) 的催化效率高度依赖于加入的路易斯酸的路易斯酸性,即更强的路易斯酸提供了更高产率的双(吲哚基)甲烷衍生物。同时,这种 Pd(II)/LA 催化的脱羧加成反应对吲哚骨架和丙炔酸的苄基环上的各种富电子或缺电子取代基具有良好的耐受性。对这种 Pd(II)/Sc(III)催化的原位 1H NMR 动力学研究揭示了在脱羧后,通过吡咯加成到炔基-Pd(II)/Sc(III)物种中形成瞬态乙烯基-Pd(II)/Sc(III)中间体,这在以前很少观察到。