The use of non-supported Fe nanoparticles in the hydrogenation of unsaturated C–C bonds is a green catalytic concept at the frontier between homogeneous and heterogeneous catalysis. Iron nanoparticles can be obtained by reducing Fe salts with strong reductants in various solvents. FeCl3 reduced by 3 equivalents of EtMgCl forms an active catalyst for the hydrogenation of a range of olefins and alkynes. Olefin hydrogenation is relatively fast at 5 bar using 5 mol% of catalyst. The catalyst is also active for terminal olefins and 1,1' and 1,2-cis disubstituted olefins while trans-olefins react much slower. 1-Octyne is hydrogenated to mixtures of 1-octene and octane. Kinetic studies led us to propose a mechanism for this latter transformation w...
The gas-phase partial hydrogenation of propyne was investigated over supported Ag nanoparticles (2-2...
Hydrogenation of unsaturated hydrocarbon compounds, catalyzed by transition metals, is traditionally...
Iron(0) nanoparticles in ionic liquids (ILs) have been shown to catalyse the semi-hydrogenation of a...
The use of non-supported Fe nanoparticles in the hydrogenation of unsaturated C–C bonds is a green c...
The use of non-supported Fe nanoparticles in the hydrogenation of unsaturated C–C bonds is a green c...
Iron nanoparticles prepared by reducing FeCl3 with three equivalents of EtMgCl in THF are effective ...
Aim of this thesis was the development of new iron-based catalyst systems for the hydrogenation of C...
The scope and mechanism of a practical protocol for the iron-catalyzed hydrogenation of alkenes and ...
The replacement of noble metal technologies and the realization of new reactivities with earth-abund...
Selective hydrogenations of alkynes are a class of essential reactions in organic synthesis chemistr...
We characterize the surface chemical states of reactants and catalysts under reaction conditions to ...
The relationship between catalytic response and properties of the active phase is difficult to estab...
The gas-phase partial hydrogenation of propyne was investigated over supported Ag nanoparticles (2-2...
Hydrogenation of unsaturated hydrocarbon compounds, catalyzed by transition metals, is traditionally...
Iron(0) nanoparticles in ionic liquids (ILs) have been shown to catalyse the semi-hydrogenation of a...
The use of non-supported Fe nanoparticles in the hydrogenation of unsaturated C–C bonds is a green c...
The use of non-supported Fe nanoparticles in the hydrogenation of unsaturated C–C bonds is a green c...
Iron nanoparticles prepared by reducing FeCl3 with three equivalents of EtMgCl in THF are effective ...
Aim of this thesis was the development of new iron-based catalyst systems for the hydrogenation of C...
The scope and mechanism of a practical protocol for the iron-catalyzed hydrogenation of alkenes and ...
The replacement of noble metal technologies and the realization of new reactivities with earth-abund...
Selective hydrogenations of alkynes are a class of essential reactions in organic synthesis chemistr...
We characterize the surface chemical states of reactants and catalysts under reaction conditions to ...
The relationship between catalytic response and properties of the active phase is difficult to estab...
The gas-phase partial hydrogenation of propyne was investigated over supported Ag nanoparticles (2-2...
Hydrogenation of unsaturated hydrocarbon compounds, catalyzed by transition metals, is traditionally...
Iron(0) nanoparticles in ionic liquids (ILs) have been shown to catalyse the semi-hydrogenation of a...