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Synthesis of Polycyclic Indole Skeletons by a Gold(I)-Catalyzed Cascade Reaction

机译:金(I)催化级联反应合成多环吲哚骨架

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The conversion of simple, easily available ureasubstituted 3-phenylpropargyl alcohols catalyzed by a simple IPr–gold(I) catalyst in a gold(I)-catalyzed cascade reaction composing of a gold-catalyzed nucleophilic addition and a subsequent gold-catalyzed substitution reaction delivers 1H-imidazo[1, 5-a]indol-3(2H)-ones. Other gold(I) catalysts or silver catalysts gave lower yields and often gave other side products. Gold(III) and copper(II) catalysts decomposed the starting material. Twelve examples, including donor and acceptor substituents on the distal nitrogen of the urea substructure, are provided. An X-ray crystal structure analysis confirmed the structural assignment. The mechanistic investigation including isolation and further conversion of intermediates and reactions with enantiopure starting materials indicated that after the nucleophilic-addition step, the substrate undergoes an S_N1-type benzylic substitution reaction at the indolyl alcohol intermediate or an intramolecular hydroamination reaction of the 2-vinylindole intermediate.
机译:由简单的IPr-金(I)催化剂在金(I)催化的级联反应(由金催化的亲核加成反应和随后的金催化的取代反应组成)中催化的简单易得的脲取代的3-苯基炔丙醇的转化可实现1H-咪唑并[1,5-a]吲哚-3(2H)-1。其他金(I)催化剂或银催化剂给出的收率较低,并且经常给出其他副产物。金(III)和铜(II)催化剂分解了起始原料。提供了十二个实例,包括在尿素亚结构的远端氮上的供体和受体取代基。 X射线晶体结构分析证实了结构分配。包括中间体的分离和进一步转化以及与对映体纯原料的反应在内的机理研究表明,在亲核加成步骤后,底物在吲哚醇中间体上发生S_N1型苄基取代反应或2-乙烯基吲哚的分子内加氢胺化反应中间。

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