Catalysts consisting of cobalt and nickel impregnated on magnetite have been prepared, characterized and used for the hydroacylation reaction of different azodicarboxylate compounds with aldehydes, using nearly stoichiometric amounts of both reagents in only 3 h. Furthermore, this reaction has been conducted with the smallest amount of catalyst. The cobalt catalyst is stable enough to be removed by magnetic decantation and recycled ten-fold without any detrimental effect on the results.This work was supported by the Spanish Ministerio de Economía y Competitividad (MICINN; CTQ2011-24151) and University of Alicante. J. M.P. thanks the MICINN (FPI program) for her fellowship
Magnetite is a well-known material, with the impregnation of transition metals onto its surface bein...
The object of research is the processes of obtaining magnetite particles by the method of chemical c...
We report here that a cobalt catalyst generated from a cobalt(II) salt and a ligand using magnesium ...
Catalysts consisting of cobalt and nickel impregnated on magnetite have been prepared, characterized...
In this manuscript, the application of different nanocatalysts derived from metal oxides impregnated...
In this manuscript, the application of different nanocatalysts derived from metal oxides impregnated...
Magnetite is a well-known material, with the impregnation of transition metals onto its surface bein...
A low-valent cobalt catalyst generated from cobalt(II) bromide, a diphosphine ligand, and zinc powde...
A low-valent cobalt catalyst generated from cobalt(II) bromide, a diphosphine ligand, and zinc powd...
Intermolecular hydroacylation of aldehydes catalyzed by an in situ generated low-valent cobalt syste...
ABSTRACT: We describe a cobalt-catalyzed hydroacylation of 1,3-dienes with non-chelating aldehydes. ...
Intermolecular hydroacylation of aldehydes catalyzed by an in situ generated low-valent cobalt syste...
Copper-impregnated magnetite is a versatile heterogeneous catalytic system for the synthesis of 1,3-...
Copper-impregnated magnetite is a versatile heterogeneous catalytic system for the synthesis of 1,3-...
The object of research is the processes of obtaining magnetite particles by the method of chemical c...
Magnetite is a well-known material, with the impregnation of transition metals onto its surface bein...
The object of research is the processes of obtaining magnetite particles by the method of chemical c...
We report here that a cobalt catalyst generated from a cobalt(II) salt and a ligand using magnesium ...
Catalysts consisting of cobalt and nickel impregnated on magnetite have been prepared, characterized...
In this manuscript, the application of different nanocatalysts derived from metal oxides impregnated...
In this manuscript, the application of different nanocatalysts derived from metal oxides impregnated...
Magnetite is a well-known material, with the impregnation of transition metals onto its surface bein...
A low-valent cobalt catalyst generated from cobalt(II) bromide, a diphosphine ligand, and zinc powde...
A low-valent cobalt catalyst generated from cobalt(II) bromide, a diphosphine ligand, and zinc powd...
Intermolecular hydroacylation of aldehydes catalyzed by an in situ generated low-valent cobalt syste...
ABSTRACT: We describe a cobalt-catalyzed hydroacylation of 1,3-dienes with non-chelating aldehydes. ...
Intermolecular hydroacylation of aldehydes catalyzed by an in situ generated low-valent cobalt syste...
Copper-impregnated magnetite is a versatile heterogeneous catalytic system for the synthesis of 1,3-...
Copper-impregnated magnetite is a versatile heterogeneous catalytic system for the synthesis of 1,3-...
The object of research is the processes of obtaining magnetite particles by the method of chemical c...
Magnetite is a well-known material, with the impregnation of transition metals onto its surface bein...
The object of research is the processes of obtaining magnetite particles by the method of chemical c...
We report here that a cobalt catalyst generated from a cobalt(II) salt and a ligand using magnesium ...