Ligand-Controlled Regiodivergent Palladium-Catalyzed Hydrogermylation of Ynamides
Author(s) -
Vincent Debrauwer,
Aneta Turlik,
Lénaïc Rummler,
Alessandro Prescimone,
Nicolas Blanchard,
K. N. Houk,
Vincent Bizet
Publication year - 2020
Publication title -
journal of the american chemical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.115
H-Index - 612
eISSN - 1520-5126
pISSN - 0002-7863
DOI - 10.1021/jacs.0c03556
Subject(s) - chemistry , palladium , ligand (biochemistry) , steric effects , phosphine , catalysis , combinatorial chemistry , metal , ionic bonding , molecule , stereochemistry , computational chemistry , organic chemistry , ion , biochemistry , receptor
Ynamides are fascinating small molecules with complementary reactivities under radical, ionic, and metal-catalyzed conditions. We report herein synthetic and DFT investigations of palladium-catalyzed ligand-controlled regiodivergent hydrometalation reactions of ynamides. Germylated and stannylated enamides are obtained with excellent α, E - or β, E -selectivities and a broad functional group tolerance. Such a regiodivergent palladium-catalyzed process is unique in ynamide chemistry and allows for the elaboration of metalated enamides that are useful building blocks for cross-coupling reactions or heterocyclic chemistry. DFT calculations fully support the experimental data and demonstrate the crucial roles of the rans -geometry of the [H-Pd(L)-Ge] complex, as well as of the steric requirements of the phosphine ligand. In addition, these calculations support the prevalence of a hydro-palladation pathway over a metal palladation of the π system of the ynamide.
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