1440773-69-2Relevant academic research and scientific papers
A new class of non-C2-symmetric ligands for oxidative and redox-neutral palladium-catalyzed asymmetric allylic alkylations of 1,3-diketones
Trost, Barry M.,Donckele, Etienne J.,Thaisrivongs, David A.,Osipov, Maksim,Masters, James T.
supporting information, p. 2776 - 2784 (2015/03/04)
We report the discovery, synthesis, and application of a new class of non-C2-symmetric phosphoramidite ligands derived from pyroglutamic acid for use in both oxidative and redox-neutral palladium-catalyzed asymmetric allylic alkylations of 1,3-diketones. The resulting chiral products are typically obtained in high yield with good to excellent levels of enantioselectivity.
Palladium-catalyzed enantioselective allylic alkylations through C-H activation
Trost, Barry M.,Thaisrivongs, David A.,Donckele, Etienne J.
supporting information, p. 1523 - 1526 (2013/04/10)
A new ligand class: The title reaction was made possible by the discovery of a new class of phosphoramidite ligands. A variety of sterically and electronically diverse allylarenes undergo reaction with 2-acetyl-1-tetralones to form quaternary carbon stereocenters. This is a conceptually and mechanistically distinct strategy from traditional methods for the synthesis of enantioenriched allylic substitution products. 2,6-DMBQ=2,6- dimethylbenzoquinone. Copyright
