Copper nanoparticles (CuNPs) supported on ZnO have been shown to effectively catalyze the direct synthesis of β-ketophosphonates from alkenes or alkynes, and that of vinyl phosphonates from alkynes and diethylphosphite, under air and in the absence of any additive or ligand. When using alkynes as starting materials, the selectivity proved to be dependent on the nature of the alkyne. Thus, alkynes conjugated with an aromatic ring or a carbon–carbon double bond gave β-ketophosphonates as the main reaction products, whereas aliphatic alkynes or alkynes conjugated with a carbonyl group led to the formation of the corresponding vinyl phosphonates.This work was generously supported by the Consejo Nacional de Investigaciones Científicas y Técnicas...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
A synergistic Cu/Fe-catalyzed aerobic oxyphosphorylation of alkynes or alkynyl carboxylic acids with...
International audienceThe first paper on the hydrophosphonylation of terminal alkenes was published ...
Copper nanoparticles (CuNPs) supported on ZnO have been shown to effectively catalyze the direct syn...
A simple and mild methodology for the direct synthesis of alkynylphosphonates is presented. The reac...
A simple and mild methodology for the direct synthesis of alkynylphosphonates is presented. The reac...
A simple and mild methodology for the direct synthesis of alkynylphosphonates is presented. The reac...
The reaction mechanism of the CuNPs/ZnO-catalyzed hydrophosphorylation of aliphatic alkynes for the ...
It was recently discovered that easily available CuSO4&bull 5H2O could be employed as an efficient c...
Through the Cu(I)-catalyzed coupling of diazophosphonates with terminal alkynes, an efficient method...
A new catalytic system for the alkylation of H-phosphonates and diphenylphosphine oxide with N-tosyl...
A copper/iron-catalyzed oxyphosphorylation of alkynes with H-phosphonates through a radical process ...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
A synergistic Cu/Fe-catalyzed aerobic oxyphosphorylation of alkynes or alkynyl carboxylic acids with...
International audienceThe first paper on the hydrophosphonylation of terminal alkenes was published ...
Copper nanoparticles (CuNPs) supported on ZnO have been shown to effectively catalyze the direct syn...
A simple and mild methodology for the direct synthesis of alkynylphosphonates is presented. The reac...
A simple and mild methodology for the direct synthesis of alkynylphosphonates is presented. The reac...
A simple and mild methodology for the direct synthesis of alkynylphosphonates is presented. The reac...
The reaction mechanism of the CuNPs/ZnO-catalyzed hydrophosphorylation of aliphatic alkynes for the ...
It was recently discovered that easily available CuSO4&bull 5H2O could be employed as an efficient c...
Through the Cu(I)-catalyzed coupling of diazophosphonates with terminal alkynes, an efficient method...
A new catalytic system for the alkylation of H-phosphonates and diphenylphosphine oxide with N-tosyl...
A copper/iron-catalyzed oxyphosphorylation of alkynes with H-phosphonates through a radical process ...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
Copper-catalysis allows the direct oxygenarylation of dialkyl phosphonates with diaryliodonium salts...
A synergistic Cu/Fe-catalyzed aerobic oxyphosphorylation of alkynes or alkynyl carboxylic acids with...
International audienceThe first paper on the hydrophosphonylation of terminal alkenes was published ...