A series of ligands derived from the bis-2-pyridinylmethylamine structure, which bear either additional hydroxyl or aromatic amino groups, were prepared and their Zn-II complexes were studied as catalysts for the cleavage of bis-p-nitrophenyl phosphate (BNP) and 2-hydroxypropyl-p-nitrophenyl phosphate (HPNP) diesters. A comparative kinetic study indicated that the insertion of organic groups, capable of acting as nucleophiles or as hydrogen-bond donors, substantially increases the hydrolytic activity of the metal complex. Dissection of the effects of the individual groups revealed that the increase in reactivity can reach up to three orders of magnitude. The improved efficiency of the systems studied, combined with the benefits resulting fr...
The development of synthetic agents able to hydrolytically cleave phosphate diester bonds with high ...
There have been considerable research efforts in develop-ing efficient catalysts carrying two or thr...
The development of synthetic agents able to hydrolytically cleave phosphate diester bonds with high ...
A series of ligands derived from the bis-2-pyridinylmethylamine structure, which bear either additio...
Although natural systems demonstrate that simple organic features and metal ion cofactors can combin...
The catalytic effects of the Zn(II) complexes of a series of poliaminic ligands in the hydrolysis of...
The catalytic effects of the Zn(II) complexes of a series of poliaminic ligands in the hydrolysis of...
The catalytic effects of the Zn(II) complexes of a series of poliaminic ligands in the hydrolysis of...
A dinuclear copper(II) complex has been investigated for promoting the transesterification of a phos...
Kinetic investigations and density functional theory calculations were used to explore the mechanism...
The dinuclear ligand 1 based on the bis-(2-amino-pyridinyl-6-methyl)amine (BAPA) metal binding unit ...
Zn(II) complexes bearing multiple auxiliary organic groups greatly accelerate the cleavage of a phos...
di-Zinc(II) complexes of the ligands 2,6-bis((bis(2-methoxyethyl)amino)methyl)-4-methylphenol (HL1),...
The design of artificial catalysts to hydrolyse phosphate diesters under mild conditions remains ext...
Zn(II) complexes bearing multiple auxiliary organic groups greatly accelerate the cleavage of a phos...
The development of synthetic agents able to hydrolytically cleave phosphate diester bonds with high ...
There have been considerable research efforts in develop-ing efficient catalysts carrying two or thr...
The development of synthetic agents able to hydrolytically cleave phosphate diester bonds with high ...
A series of ligands derived from the bis-2-pyridinylmethylamine structure, which bear either additio...
Although natural systems demonstrate that simple organic features and metal ion cofactors can combin...
The catalytic effects of the Zn(II) complexes of a series of poliaminic ligands in the hydrolysis of...
The catalytic effects of the Zn(II) complexes of a series of poliaminic ligands in the hydrolysis of...
The catalytic effects of the Zn(II) complexes of a series of poliaminic ligands in the hydrolysis of...
A dinuclear copper(II) complex has been investigated for promoting the transesterification of a phos...
Kinetic investigations and density functional theory calculations were used to explore the mechanism...
The dinuclear ligand 1 based on the bis-(2-amino-pyridinyl-6-methyl)amine (BAPA) metal binding unit ...
Zn(II) complexes bearing multiple auxiliary organic groups greatly accelerate the cleavage of a phos...
di-Zinc(II) complexes of the ligands 2,6-bis((bis(2-methoxyethyl)amino)methyl)-4-methylphenol (HL1),...
The design of artificial catalysts to hydrolyse phosphate diesters under mild conditions remains ext...
Zn(II) complexes bearing multiple auxiliary organic groups greatly accelerate the cleavage of a phos...
The development of synthetic agents able to hydrolytically cleave phosphate diester bonds with high ...
There have been considerable research efforts in develop-ing efficient catalysts carrying two or thr...
The development of synthetic agents able to hydrolytically cleave phosphate diester bonds with high ...