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温和条件下钯催化重氮盐与苯胺氨基甲酸酯的邻位C-H芳基化反应:咔唑生物碱的便捷合成

Palladium-Catalyzed Ortho C-H Arylation of Aniline Carbamates with Diazonium Salts under Mild Conditions: Expedient Synthesis of Carbazole Alkaloids.

作者信息

Polley Arghya, Varalaxmi Kasarla, Jana Ranjan

机构信息

Organic and Medicinal Chemistry Division, CSIR-Indian Institute of Chemical Biology, 4 Raja S. C. Mullick Road, Jadavpur, Kolkata 700032, West Bengal, India.

Academy of Scientific and Innovative Research (AcSIR), Kolkata 700032, West Bengal, India.

出版信息

ACS Omega. 2018 Oct 31;3(10):14503-14516. doi: 10.1021/acsomega.8b02009.

Abstract

Despite the significant progress, C-H arylation with aryldiazonium salts is a major challenge because of the faster rate of oxidative addition compared to the C-H insertion, leading to a deleterious homocoupling product. Recently, this limitation has been overcome by merging a photoredox catalyst with transition-metal catalysts which proceeds through a distinct single electron-transfer mechanism. However, we have observed that the photoredox catalyst is not necessary for the C-H arylation of aniline rather chemical reactivity can be controlled by tuning the electronic nature of the substrate. We report, herein, a palladium-catalyzed C-H arylation of aniline carbamates with aryldiazonium salts under external oxidant, acid, base free conditions at room temperature. Mechanistic studies suggest that the present reaction proceeds through a directed electrophilic metalation pathway which is the slowest step. However, the oxidative addition may take place through either ionic (2e) or radical (1e) pathway to generate hypervalent Pd(IV) or Pd(III) intermediate, respectively. A facile reductive elimination from the hypervalent palladium complex furnishes the C-H arylation product under mild conditions. The carbamate directing group is easily removed from the product to obtain the corresponding ortho-arylated aniline, which is a precursor for plethora of carbazole alkaloids and other biologically active molecules. The reaction is scaled-up to gram scale to furnish the desired product in comparable yields. Finally, we have applied this C-H arylation methodology for the synthesis of series of carbazole alkaloids such as clausine V, clauszoline K, -methoxymahanine, and -methylmurrayamine-D.

摘要

尽管取得了重大进展,但由于与C-H插入相比氧化加成速率更快,导致有害的均偶联产物,芳基重氮盐的C-H芳基化仍是一项重大挑战。最近,通过将光氧化还原催化剂与过渡金属催化剂结合,克服了这一限制,该过程通过独特的单电子转移机制进行。然而,我们观察到,对于苯胺的C-H芳基化,光氧化还原催化剂并非必需,而是可以通过调节底物的电子性质来控制化学反应性。在此,我们报道了在外部氧化剂、无酸、无碱条件下,室温下钯催化苯胺氨基甲酸酯与芳基重氮盐的C-H芳基化反应。机理研究表明,本反应通过定向亲电金属化途径进行,这是最慢的步骤。然而,氧化加成可能通过离子(2e)或自由基(1e)途径发生,分别生成高价Pd(IV)或Pd(III)中间体。在温和条件下,高价钯配合物的轻松还原消除提供了C-H芳基化产物。氨基甲酸酯导向基团很容易从产物中去除,以获得相应的邻位芳基化苯胺,它是大量咔唑生物碱和其他生物活性分子的前体。该反应放大至克级规模,以相当的产率提供所需产物。最后,我们将这种C-H芳基化方法应用于一系列咔唑生物碱的合成,如clausine V、clauszoline K、-甲氧基马汉宁和-甲基默里胺-D。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e17/6644385/9fca6aac8239/ao-2018-020093_0001.jpg

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