As shown by theoretical calculations, azabis(oxazoline)-copper complexes are considerably more stable than the analogous bis(oxazoline)-copper complexes. This enhanced stability allows them to be efficiently immobilized by means of electrostatic interactions to different anionic supports, such as clays and nafion-silica nanocomposites, without the loss of a ligand, as is observed for bis(oxazolines). As a result, enantioselectivities of around 90 % ee are obtained in the cyclopropanation reaction between styrene and ethyl diazoacetate. Moreover, the solid catalyst is easily recoverable
A series of chiral C-2-symmetric bis(oxazoline) ligands containing dibenzo[a,c]cycloheptadiene units...
A copper(II) chiral aza-bis(oxazoline) catalyst (CuazaBox) was anchored onto ordered mesoporous sili...
Bis(oxazolines) are easily immobilized by functionalization of the central methylene bridge with pol...
Bis(oxazoline)–copper complexes, immobilised by electrostatic interactions on Laponite and Nafion/si...
Cu-Al-MCM41, prepared by deposition of copper(II) triflate with incipient wetness impregnation and t...
Chiral bis(oxazoline)-copper complexes can be easily immobilized onto anionic solids or in ionic liq...
Bis(oxazoline)–copper complexes can be immobilized by cationic exchange or a covalent bond to the su...
Supported ( PW₁₂ O₄₀³⁻ ) is a suitable counterion to immobilize chiral azabis(oxazoline)–copper comp...
Chiral phenyl substituted bis(oxazoline) (PhBox) was covalently immobilized through carbamate linker...
Several clays, exchanged with cationic bis(oxazoline)-CuII complexes, have been tested as catalysts ...
Several chiral bis(oxazoline)–copper complexes are supported by cation exchange in laponite, bentoni...
Chiral quinolinoxazoline ligands, a class of C1-symmetric chiral ligands, are tested in the enantios...
Azabis(oxazolines) can be used as chiral ligands in the copper-catalyzed enantioselective Mukaiyama ...
Azabis(oxazoline)–Cu complexes are more stable than their analogues based on bis(oxazoline) ligands....
9 pages, 3 figures, 3 tables.Azabis(oxazolines) can be used as chiral ligands in the copper-catalyze...
A series of chiral C-2-symmetric bis(oxazoline) ligands containing dibenzo[a,c]cycloheptadiene units...
A copper(II) chiral aza-bis(oxazoline) catalyst (CuazaBox) was anchored onto ordered mesoporous sili...
Bis(oxazolines) are easily immobilized by functionalization of the central methylene bridge with pol...
Bis(oxazoline)–copper complexes, immobilised by electrostatic interactions on Laponite and Nafion/si...
Cu-Al-MCM41, prepared by deposition of copper(II) triflate with incipient wetness impregnation and t...
Chiral bis(oxazoline)-copper complexes can be easily immobilized onto anionic solids or in ionic liq...
Bis(oxazoline)–copper complexes can be immobilized by cationic exchange or a covalent bond to the su...
Supported ( PW₁₂ O₄₀³⁻ ) is a suitable counterion to immobilize chiral azabis(oxazoline)–copper comp...
Chiral phenyl substituted bis(oxazoline) (PhBox) was covalently immobilized through carbamate linker...
Several clays, exchanged with cationic bis(oxazoline)-CuII complexes, have been tested as catalysts ...
Several chiral bis(oxazoline)–copper complexes are supported by cation exchange in laponite, bentoni...
Chiral quinolinoxazoline ligands, a class of C1-symmetric chiral ligands, are tested in the enantios...
Azabis(oxazolines) can be used as chiral ligands in the copper-catalyzed enantioselective Mukaiyama ...
Azabis(oxazoline)–Cu complexes are more stable than their analogues based on bis(oxazoline) ligands....
9 pages, 3 figures, 3 tables.Azabis(oxazolines) can be used as chiral ligands in the copper-catalyze...
A series of chiral C-2-symmetric bis(oxazoline) ligands containing dibenzo[a,c]cycloheptadiene units...
A copper(II) chiral aza-bis(oxazoline) catalyst (CuazaBox) was anchored onto ordered mesoporous sili...
Bis(oxazolines) are easily immobilized by functionalization of the central methylene bridge with pol...