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In Situ Hypoiodite-Catalyzed Oxidative Rearrangement of Chalcones: Scope and Mechanistic Investigation.

Meiqiong ZhengChao HuangJian-Zhong YanShu-Li XieShao-Jia KeHai-Dong XiaYa-Nan Duan
Published in: The Journal of organic chemistry (2023)
It is highly desirable to avoid using rare or toxic metals for oxidative reactions in the synthesis of pharmaceuticals and fine chemicals. Hypervalent iodine compounds are environmentally benign alternatives, but their catalytic use has been quite limited. Herein, the protocol for in situ hypoiodite-catalyzed oxidative rearrangement of chalcones is first realized under mild and metal-free conditions, which provided a nontoxic, environmental-benign, and catalytic alternative to the thallium-based protocol. Also, the applicability and effectiveness of this catalytic protocol got well demonstrated via gram-scale synthesis and product derivatization. What is more, control and NMR tracking experiments were performed to figure out the possible catalytic species and intermediates.
Keyphrases
  • randomized controlled trial
  • crystal structure
  • room temperature
  • magnetic resonance
  • systematic review
  • magnetic resonance imaging
  • gram negative
  • risk assessment
  • health risk
  • liquid chromatography
  • heavy metals