| Literature DB >> 23766812 |
Jorgen S Willemsen1, Jan C M van Hest, Floris P J T Rutjes.
Abstract
Water-soluble dendritic iridium catalysts were synthesized by attaching a reactive metal complex to DAB-Am dendrimers via an adapted asymmetric bipyridine ligand. These dendritic catalysts were applied in the aqueous reductive amination of valine while contained in a dialysis bag. Comparable conversions were observed as for the noncompartmentalized counterparts, albeit with somewhat longer reaction times. These results clearly show that the encapsulated catalyst system is suitable to successfully drive a complex reaction mixture with various equilibrium reactions to completion.Entities:
Keywords: aqueous reductive amination; cascade catalysis; compartmentalization; dendritic catalysts; dialysis
Year: 2013 PMID: 23766812 PMCID: PMC3678615 DOI: 10.3762/bjoc.9.110
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1General approach for the use of dendritic catalysts in a dialysis bag.
Scheme 1Synthesis of water-soluble iridium catalyst 3.
Scheme 2Synthesis of the desymmetrized bipyridine 8.
Scheme 3Attachment of the adapted ligand 8 to the dendrimers via a multi-isocyanate coupling, followed by iridium coordination.
Scheme 4Catalytic reductive amination of valine (18) via unfavorable equilibrium reactions in water.
Figure 2Formation of 19 catalyzed by the three iridium catalysts.
Figure 3Reaction setup to perform compartmentalized catalysis.
Figure 4G3 catalyst 16 activity in dialysis device.
Figure 5G4 catalyst 17 activity in subsequent runs.