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"Click Chemistry" Mediated Functional Microporous Organic Nanotube Networks for Heterogeneous Catalysis.

Wei YuMinghong ZhouTianqi WangZidong HeBuyin ShiYang XuKun Huang
Published in: Organic letters (2018)
The synthesis of azide functional microporous organic nanotube networks (N3-MONNs) via a Friedel-Crafts hyper-cross-linking reaction is reported. Subsequently, a general method for obtaining heterogeneous catalysts through a Cu-catalyzed alkyne-azide reaction is presented. The small-molecule catalysts such as 2,2,6,6,-tetramethylpiperidine-1-oyl and 4-(N,N-dimethylamino)pyridine can be anchored into the MONNs. Owing to the hierarchically porous structure and high surface area, these catalysts show high activity in selective oxidation of alcohols and acylation reaction, respectively.
Keyphrases
  • highly efficient
  • metal organic framework
  • small molecule
  • transition metal
  • electron transfer
  • water soluble
  • hydrogen peroxide
  • nitric oxide
  • ionic liquid