| Literature DB >> 30155203 |
Abstract
The development of a ligand-assisted Pd-catalyzed C-H alkenylation of aliphatic amines is reported. Our studies indicated that an amino-acid-derived ligand renders the C-H bond activation step reversible and promotes the traditionally difficult alkenylation process. The C(sp3)-H alkenylation proceeds through a 5-membered-ring cyclopalladation pathway that allows access to complex aliphatic heterocycles that could be useful to practioners of synthetic and medicinal chemistry.Entities:
Year: 2017 PMID: 30155203 PMCID: PMC6092717 DOI: 10.1039/c7sc00468k
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Evolution of a ligand-controlled C–H alkenylation.
Fig. 3Identification of a ligand controlled reversible C–H activation.
Fig. 2Aliphatic systems capable of C–H alkenylation.
Scope of aliphatic amines
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Yield of isolated product. See ESI for details. TIPS = triisopropylsilyl, Nphth = phthalimide, Ts = p-toluenesulfonyl, BPin = boronic acid pinacol ester.
Without ligand Ac-Gly-OH 6a.
Scope of alkenes
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Yield of isolated product.
With 20 mol% Ac-Gly-OH 6a.
Reaction at room temperature. See ESI for details.
Scheme 1Reaction of di-substituted acrylates.
Scheme 2X-ray crystal structure of the amine-palladacycle int-V (hydrogens are removed for clarity) and its stoichiometric reaction with acrylate 2a.
Fig. 4KIE studies of the catalytic C–H alkenylation.
Fig. 5Synthetic applications.