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Improved Effect of Metal Coordination on Molecular Oxygen Activation for Selective Aerobic Photooxidation.

Jing-Wang CuiCai-Hui RaoMeng-Ze JiaXin-Rong YaoJie Zhang
Published in: ChemSusChem (2022)
A pyridinium-based complex with environment-friendly and earth-abundant Zn II ion was synthesized and explored as a green catalyst applied in activating molecular oxygen for the simple and efficient photooxidation of alcohols into aldehydes under additive-free and mild conditions. The metal coordination was conducive to promoting the electron transfer efficiency and introducing the heavy-atom effect for the increased generation of ⋅O 2 - and 1 O 2 . Accordingly, improved photocatalytic performance of this complex compared to its precursor, no matter activity or selectivity, was obtained, facilitating the transformation of alcohols into aldehydes in a sustainable way.
Keyphrases
  • electron transfer
  • reduced graphene oxide
  • highly efficient
  • signaling pathway
  • single molecule
  • room temperature
  • heavy metals
  • high intensity