Brütting Christian, Fritsche Raphael F, Kutz Sebastian K, Börger Carsten, Schmidt Arndt W, Kataeva Olga, Knölker Hans-Joachim
Department Chemie, Technische Universität Dresden, Bergstraße 66, 01069, Dresden, Germany.
A. M. Butlerov Chemistry Institute, Kazan Federal University, Kremlevskaya Str. 18, Kazan, 420008, Russia.
Chemistry. 2018 Jan 9;24(2):458-470. doi: 10.1002/chem.201704554. Epub 2017 Dec 4.
We describe the synthesis of 1,1'- and 2,2'-bicarbazoles by oxidative homocoupling of 2- and 1-hydroxycarbazoles. The oxidative coupling using catalytic amounts of F PcFe can be applied to both groups of substrates. Although F PcFe generally provides the best yields for the synthesis of 1,1'-bicarbazoles, di-tert-butyl peroxide affords better results for the 2,2'-bicarbazoles. In our study, we have achieved the first syntheses of the biscarbalexines A-C, bisglybomine B, 2,2'-dihydroxy-7,7'-dimethoxy-3,3'-dimethyl-1,1'-bicarbazole, bispyrayafoline C, and bisisomahanine. The iron-catalyzed coupling of koenigine led to an improved synthesis of 8,8''-biskoenigine and afforded an unprecedented decacylic product. Oxidative coupling of 1-hydroxycarbazoles led to bisclausenol, and to the first total syntheses of bismurrayafoline B and D.
我们描述了通过2-羟基咔唑和1-羟基咔唑的氧化均偶联反应合成1,1'-联咔唑和2,2'-联咔唑的方法。使用催化量的F PcFe进行的氧化偶联反应可应用于这两组底物。虽然F PcFe通常为1,1'-联咔唑的合成提供最佳产率,但二叔丁基过氧化物对2,2'-联咔唑的合成效果更好。在我们的研究中,我们首次合成了双咔巴列辛A-C、双甘波明B、2,2'-二羟基-7,7'-二甲氧基-3,3'-二甲基-1,1'-联咔唑、双吡雷亚福林C和双异马汉宁。铁催化的柯尼吉宁偶联反应改进了8,8''-双柯尼吉宁的合成,并得到了一种前所未有的十碳产物。1-羟基咔唑的氧化偶联反应生成了双克劳森醇,以及首次全合成的双默雷亚福林B和D。