A Green Aerobic Oxidative Synthesis of Pyrrolo[1,2-a]quinoxalines from Simple Alcohols without Metals and Additives.
Jixing LiJinlong ZhangHuameng YangZeng GaoGaoxi JiangPublished in: The Journal of organic chemistry (2016)
A practical and concise protocol for the efficient preparation of pyrrolo[1,2-a]quinoxalines through a cascade of alcohol oxidation/imine formation/intramolecular cyclization/oxidative dehydrogenation has been established. A series of substituted pyrrolo[1,2-a]quinoxaline derivatives were constructed readily in yields of 53-93% from the cheap primary alcohols by using dioxygen as the terminal oxidant. Remarkably, the fact that no extra metals and additives were necessary makes this unprecedented aerobic oxidation process highly step- and atom-economical. The usefulness of this transformation was further demonstrated with the gram-scale synthesis of compound 3aa under standard conditions.
Keyphrases
- human health
- hydrogen peroxide
- high intensity
- health risk
- electron transfer
- ionic liquid
- health risk assessment
- randomized controlled trial
- gram negative
- wastewater treatment
- molecular dynamics
- molecular docking
- alcohol consumption
- climate change
- visible light
- drinking water
- structure activity relationship
- simultaneous determination