4.8 Article

Insights into the Mechanism of Anodic N-N Bond Formation by Dehydrogenative Coupling

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 139, Issue 35, Pages 12317-12324

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.7b07488

Keywords

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Funding

  1. DFG fellowship by the Excellence Initiative by the Graduate School Materials Science in Mainz [GSC 266]
  2. U.S. National Science Foundation [CHE-1463913]
  3. Advanced Lab for Electrochemistry and Electrosynthesis - ELYSION (Carl Zeiss Stiftung)
  4. DFG [WA 1276/17-1]

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The electrochemical synthesis of pyrazolidine-3,5-diones and benzoxazoles by N-N bond formation and C,O linkage, respectively, represents an easy access to medicinally relevant structures. Electrochemistry as a key technology ensures a safe and sustainable approach. We gained insights in the mechanism of these reactions by combining cyclovoltammetric and synthetic studies. The electron-transfer behavior of anilides and dianilides was studied and led to the following conclusion: The N N bond formation involves a diradical as intermediate, whereas the benzoxazole formation is based on a cationic mechanism. Besides these studies, we developed a synthetic route to mixed dianilides as starting materials for the N N coupling. The compatibility with valuable functionalities like triflates and mesylates for follow-up reactions as well as the comparison of different electrochemical setups also enhanced the applicability of this method.

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