4.8 Article

Hydroxylamines As Bifunctional Single-Nitrogen Sources for the Rapid Assembly of Diverse Tricyclic Indole Scaffolds

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 142, Issue 14, Pages 6698-6707

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.0c00403

Keywords

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Funding

  1. National Science Foundation of China [21925108]
  2. Key Science and Technology Innovation Team of Shaanxi Province [2017KCT-37]
  3. Education Department of Shaanxi Province [18JS108]
  4. Key Laboratory Project of Xi'an [201805058ZD9CG42]
  5. Northwest University [YZZ17107]

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Conventional approaches on using hydroxylamine derivatives as single nitrogen sources, for the construction of n-membered (n > 3) N-heterocycles, rely upon two chemical operations by involving sequential nucleophilic and electrophilic C-N bond formations. Here, we report a highly efficient cascade of alkyne insertion/C-H activation/amination for the rapid preparation of a myriad of tricyclic indoles, in a single-step transformation, by using bifunctional secondary hydroxylamines. It is noteworthy that judicious selection of applicable amino agents, for enabling the prior oxidative addition of aryl iodide to initial Pd(0) species and subsequent two C-N bonds formation, was the key to the success of this reaction. Control experiments indicated that a five-membered palladacyclic intermediate played a crucial role in promoting the final aminative ring closure.

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