Palladium-catalyzed hydrogenolysis is often the final step in challenging natural product total syntheses and a key step in industrial processes producing fine chemicals. Here, we demonstrate that there is wide variability in the efficiency of commercial sources of palladium on carbon (Pd/C) resulting in significant differences in selectivity, reaction times, and yields. We identified the physicochemical properties of efficient catalysts for hydrogenolysis: (1) small Pd/PdO particle size (2) homogeneous distribution of Pd/PdO on the carbon support, and (3) palladium oxidation state are good predictors of catalytic efficiency. Now chemists can identify and predict a catalyst’s efficiency prior to the use of valuable synthetic material and ti...
Reversible hydrogenation and acceptorless dehydrogenation of organic molecules would enable pre-exis...
Palladium dynamics: Under hydrogenation conditions, saturating over-active palladium by carbon diffu...
We present a highly selective and active Pd carbon catalyst prepared by an easy hydrothermal synthes...
We report the preparation and hydrogenation performance of a single-site palladium catalyst that was...
Many reactions, including selective hydrogenation of alkynes, take place on solid surfaces. These re...
Palladium (0.25-5.8 wt.%) was supported on three different types of filamentous carbon in which the ...
It is of upmost importance for pharmaceutical companies to fully understand their drug production pr...
Discussed are the recent experimental and theoretical results on palladium-based catalysts for selec...
Palladium is one of the most widely applied metals in catalytic processes both in homogeneous and he...
Hydrogenations and hydrodeoxygenations represent two of the most important reactions in the producti...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Heterogeneous catalysts are used widely by chemical and energy industries because they show high rea...
Organic chemicals are the building blocks for plastics, clothing, fertilizers, pharmaceuticals and f...
Reversible hydrogenation and acceptorless dehydrogenation of organic molecules would enable pre-exis...
Palladium dynamics: Under hydrogenation conditions, saturating over-active palladium by carbon diffu...
We present a highly selective and active Pd carbon catalyst prepared by an easy hydrothermal synthes...
We report the preparation and hydrogenation performance of a single-site palladium catalyst that was...
Many reactions, including selective hydrogenation of alkynes, take place on solid surfaces. These re...
Palladium (0.25-5.8 wt.%) was supported on three different types of filamentous carbon in which the ...
It is of upmost importance for pharmaceutical companies to fully understand their drug production pr...
Discussed are the recent experimental and theoretical results on palladium-based catalysts for selec...
Palladium is one of the most widely applied metals in catalytic processes both in homogeneous and he...
Hydrogenations and hydrodeoxygenations represent two of the most important reactions in the producti...
Carbon-supported palladium (Pd/C) catalysts often display broad or multimodal Pd particle size distr...
Heterogeneous catalysts are used widely by chemical and energy industries because they show high rea...
Organic chemicals are the building blocks for plastics, clothing, fertilizers, pharmaceuticals and f...
Reversible hydrogenation and acceptorless dehydrogenation of organic molecules would enable pre-exis...
Palladium dynamics: Under hydrogenation conditions, saturating over-active palladium by carbon diffu...
We present a highly selective and active Pd carbon catalyst prepared by an easy hydrothermal synthes...