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Confining Functional Nanoparticles into Colloidal Imine-Based COF Spheres by a Sequential Encapsulation-Crystallization Method.

David Rodríguez-San-MiguelAmirali YazdiVincent GuillermJavier Pérez-CarvajalVíctor PuntesDaniel MaspochFelix Zamora
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2017)
Here, a two-step method is reported that enables imparting new functionalities to covalent organic frameworks (COFs) by nanoparticle confinement. The direct reaction between 1,3,5-tris(4-aminophenyl)benzene and 1,3,5-benzenetricarbaldehyde in the presence of a variety of metallic/metal-oxide nanoparticles resulted in embedding of the nanoparticles in amorphous and non-porous imine-linked polymer organic spheres (NP@a-1). Post-treatment reactions of NP@a-1 with acetic acid under reflux led to crystalline and porous imine-based COF-hybrid spheres (NP@c-1). Interestingly, Au@c-1 and Pd@c-1 were found to be catalytically active.
Keyphrases
  • oxide nanoparticles
  • room temperature
  • metal organic framework
  • water soluble
  • highly efficient
  • tissue engineering
  • sensitive detection
  • combination therapy
  • quantum dots
  • iron oxide