Alkanethiolate-Capped Palladium Nanoparticles for Regio- and Stereoselective Hydrogenation of Allenes.
Ting-An ChenYoung-Seok ShonPublished in: Catalysts (Basel, Switzerland) (2018)
Colloidal Pd nanoparticles capped with octanethiolate ligands have previously shown an excellent selectivity toward the mono-hydrogenation of both isolated and conjugated dienes to internal alkenes. This paper reports an efficient stereoselective mono-hydrogenation of cumulated dienes (allenes) to either Z or E olefinic isomers, depending on the substitution pattern around C=C bonds. Kinetic studies indicate that the reaction progresses through the hydrogenation of less hindered C=C bonds to produce internal Z olefinic isomers. In the cases of di-substitued olefinic products, this initial hydrogenation step is followed by the subsequent isomerization of Z to E isomers. In contrast, the slow isomerization of Z to E isomers for tri-substituted olefinic products results in the preservation of Z stereochemistry. The high selectivity of Pd nanoparticles averting an additional hydrogenation is steered from the controlled electronic and geometric properties of the Pd surface, which are the result of thiolate-induced partial poisoning and surface crowding, respectively. The high activity of colloidal Pd nanoparticle catalysts allows the reactions to be completed at room temperature and atmospheric pressure.
Keyphrases
- room temperature
- magnetic resonance
- photodynamic therapy
- high glucose
- magnetic resonance imaging
- ionic liquid
- molecular dynamics simulations
- emergency department
- diabetic rats
- walled carbon nanotubes
- particulate matter
- highly efficient
- escherichia coli
- air pollution
- transition metal
- gold nanoparticles
- endothelial cells
- adverse drug
- carbon dioxide
- candida albicans
- electronic health record