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Visible-Light-Induced Selective C-C Bond Cleavage Reactions of Dimeric β-O-4 and β-1 Lignin Model Substrates Utilizing Amine-Functionalized Fullerene.

Suk Hyun LimHannara JangMin-Ji KimKyung-Ryang WeeDong Hyun LimYoung-Il KimDae Won Cho
Published in: The Journal of organic chemistry (2022)
Finding a selective and efficient fragmentation process under ambient conditions is pivotal for the generation of fuels and chemical feedstocks from lignoceullosic biomass. In the present study, visible-light and amine-functionalized fullerene-based photocatalyst-promoted photodegradation reactions of dimeric β-O-4 and β-1 lignin model compounds, containing varying numbers of methoxy substituents on the arene ring, were explored to find and develop mild, eco-friendly photochemical techniques for efficient delignification. The results showed that, in contrast to well-known organic photoredox catalysts, amine-functionalized fullerene photocatalyst promoted photochemical reactions of lignin model compounds could lead to more efficient lignin fragmentation reactions through a pathway involving a selective C α -C β bond cleavage process, and in addition, C α -hydroxyl moiety in lignin model compounds played a significant role in the success of the C α -C β bond cleavage reaction of lignin model substrates.
Keyphrases
  • visible light
  • ionic liquid
  • quantum dots
  • magnetic resonance
  • air pollution
  • dna binding
  • wastewater treatment
  • transcription factor
  • computed tomography