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Phosphine Ligand Immobilizable on Silica and Metal Oxide Surfaces

Advantages

  • Enables chemical immobilization on silica and metal oxide surfaces by silane coupling treatment.
  • Bidentate coordination allows complexation with various metals.
  • The immobilized carriers are expected to be applied to continuous flow synthesis.

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Applications

Highly active allylation catalyst with the synergistic effect of DABCO and Palladium 1,2)

Highly active allylation catalyst with the synergistic effect of DABCO and Palladium

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Reactions Using The Immobilized Carriers

Allylation using SiO2/DABCO/PP-Pd 1,2)

Allylation using SiO2/DABCO/PP-Pd

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Synthesis of aromatic polyamides using palladium catalyst immobilized on magnetic particles 3)

Synthesis of aromatic polyamides using palladium catalyst immobilized on magnetic particles

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References

  1. 1) Co-Immobilization of a Palladium–Bisphosphine Complex and Strong Organic Base on a Silica Surface for Heterogeneous Synergistic Catalysis
  2. 2) A Pd–bisphosphine complex and organic functionalities immobilized on the same SiO2 surface: detailed characterization and its use as an e cient catalyst for allylation
  3. 3) Synthesis of new uorinated aromatic poly (ether ketone amide)s containing cardo structures by a heterogeneous palladium-catalyzed carbonylative polycondensation

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