A general protocol for the selective hydrogenation and deuteration of a variety of alkenes is presented. Key to success for these reactions is the use of a specific nickel-graphitic shell-based core–shell-structured catalyst, which is conveniently prepared by impregnation and subsequent calcination of nickel nitrate on carbon at 450 °C under argon. Applying this nanostructured catalyst, both terminal and internal alkenes, which are of industrial and commercial importance, were selectively hydrogenated and deuterated at ambient conditions (room temperature, using 1 bar hydrogen or 1 bar deuterium), giving access to the corresponding alkanes and deuterium-labeled alkanes in good to excellent yields. The synthetic utility and practicability of...
Herein, we reported a nickel catalyzed hydrogenation of alkenes with water as the sole hydrogen sour...
The goal of a carbon-neutral society can be realized by utilizing a circular carbon pathway, which c...
Hydrogenation reactions in water at elevated temperatures are challenging for heterogeneous catalyst...
Treatment of a mixture of air-stable nickel(II) bis(octanoate), Ni(O<sub>2</sub>CC<sub>7</sub>H<s...
[EN] Well-defined 25 nm nickel phosphide nanoparticles act as a colloidal catalyst for the chemosele...
Here, we report the use of monosaccharides for the preparation of novel nickel nanoparticles (NP), w...
A convenient protocol for stereodivergent hydrogenation of alkynes to E- and Z-alkenes by using nick...
The hydrogenation of olefins, styrenes, enoates, imines, and sterically hindered tri-substituted ole...
Addressed herein is the superior catalytic performance of reduced graphene oxide supported Ni30Pd70 ...
Nickel nanoparticles have been found to effectively catalyse the hydrogen-transfer reduction of a va...
Nickel nanoparticles, readily prepared by reduction of nickel(II) chloride with lithium and a cataly...
Hydrogenation reactions are essential processes in the chemical industry, giving access to a variety...
Palladium nanoparticles were impregnated on porous silica shell carbon-coated cobalt nanoparticles, ...
Methane is decomposed to carbon and hydrogen over Raney nickel catalyst in controlled manner in orde...
A series of low-loaded metallic-activated carbon catalysts were evaluated during the selective hydro...
Herein, we reported a nickel catalyzed hydrogenation of alkenes with water as the sole hydrogen sour...
The goal of a carbon-neutral society can be realized by utilizing a circular carbon pathway, which c...
Hydrogenation reactions in water at elevated temperatures are challenging for heterogeneous catalyst...
Treatment of a mixture of air-stable nickel(II) bis(octanoate), Ni(O<sub>2</sub>CC<sub>7</sub>H<s...
[EN] Well-defined 25 nm nickel phosphide nanoparticles act as a colloidal catalyst for the chemosele...
Here, we report the use of monosaccharides for the preparation of novel nickel nanoparticles (NP), w...
A convenient protocol for stereodivergent hydrogenation of alkynes to E- and Z-alkenes by using nick...
The hydrogenation of olefins, styrenes, enoates, imines, and sterically hindered tri-substituted ole...
Addressed herein is the superior catalytic performance of reduced graphene oxide supported Ni30Pd70 ...
Nickel nanoparticles have been found to effectively catalyse the hydrogen-transfer reduction of a va...
Nickel nanoparticles, readily prepared by reduction of nickel(II) chloride with lithium and a cataly...
Hydrogenation reactions are essential processes in the chemical industry, giving access to a variety...
Palladium nanoparticles were impregnated on porous silica shell carbon-coated cobalt nanoparticles, ...
Methane is decomposed to carbon and hydrogen over Raney nickel catalyst in controlled manner in orde...
A series of low-loaded metallic-activated carbon catalysts were evaluated during the selective hydro...
Herein, we reported a nickel catalyzed hydrogenation of alkenes with water as the sole hydrogen sour...
The goal of a carbon-neutral society can be realized by utilizing a circular carbon pathway, which c...
Hydrogenation reactions in water at elevated temperatures are challenging for heterogeneous catalyst...