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Metal-organic framework composites with luminescent pincer platinum(ii) complexes: 3MMLCT emission and photoinduced dehydrogenation catalysis.

Chun-Yi SunWai-Pong ToFaan-Fung HungXin-Long WangZhong-Min SuChi-Ming Che
Published in: Chemical science (2018)
Pincer platinum(ii) complexes are well documented to exhibit weak intermolecular interactions in the solid state and 77 K glassy solutions, leading to emissive triplet metal-metal-to-ligand charge transfer (3MMLCT) excited states that often vanish in dilute solutions. In this work, metal-organic framework (MOF) materials are introduced to provide a "solid solution" environment for easy access to 3MMLCT excited states of pincer platinum(ii) complexes. Phosphorescent composites PtII@MOFs (1-4) with matrix-dependent monomers and oligomer emission properties were obtained. These PtII@MOFs are efficient catalysts for photoinduced dehydrogenation reactions.
Keyphrases
  • metal organic framework
  • solid state
  • electron transfer
  • energy transfer
  • reduced graphene oxide
  • visible light
  • gold nanoparticles
  • light emitting