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Incorporating Morpholine and Oxetane into Benzimidazolequinone Antitumor Agents: The Discovery of 1,4,6,9-Tetramethoxyphenazine from Hydrogen Peroxide and Hydroiodic Acid-Mediated Oxidative Cyclizations.

Darren ConboyStyliana I MirallaiAustin CraigPatrick McArdleAli A Al-KinaniStephen BartonFawaz Aldabbagh
Published in: The Journal of organic chemistry (2019)
The reactivity of hydrogen peroxide and catalytic hydroiodic acid toward 3,6-dimethoxy-2-(cycloamino)anilines is tunable to give ring-fused benzimidazoles or 1,4,6,9-tetramethoxyphenazine in high yield. Mechanisms via a detected nitroso-intermediate are proposed for oxidative cyclization and the unexpected intermolecular displacement of the oxazine. An aqueous solution of molecular iodine is capable of the same transformations. Oxidative demethylation gave targeted benzimidazolequinones, including without cleavage of the incorporated oxetane.
Keyphrases
  • hydrogen peroxide
  • aqueous solution
  • nitric oxide
  • small molecule
  • energy transfer
  • magnetic resonance imaging
  • high throughput
  • magnetic resonance
  • single cell