Metal-containing single chain polymeric nanoparticles (SCPNs) can be used as synthetic mimics of metalloenzymes. Currently, the role of the folded polymer backbones on the activity and selectivity of metal sites is not clear. Herein, we report our findings on how polymeric frameworks modulate the coordination of Cu sites and the catalytic activity/ selectivity of Cu-containing SCPNs mimicking monophenol hydroxylation reactions. Imidazole-functionalized copolymers of poly(methyl methacrylate-co-3-imidazolyl-2-hydroxy propyl methacrylate) were used for intramolecular Cu-imidazole binding that triggered the self-folding of polymers. Polymer chains imposed steric hindrance which yielded unsaturated Cu sites with an average coordination number o...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
Polymer-bound imidazole-copper(II) complexes were investigated and applied as catalysts for oxidativ...
The quest for the construction of artificial enzyme models able to mimic the activity of metalloenzy...
The quest for the construction of artificial enzyme models able to mimic the activity of metalloenzy...
A strategy to improve the catalytic activity of transitional metal-based catalysis in the complex bi...
The quest for the construction of artificial enzyme models able to mimic the activity of metalloenzy...
“Clickase” single-chain nanoparticles (Ck-SCNPs) are folded, enzyme-mimetic unimolecular polymeric n...
Enzymes, Nature’s catalysts, facilitate a vast range of reactions under moderateconditions, with ide...
Enzymes, Nature’s catalysts, facilitate a vast range of reactions under moderateconditions, with ide...
Enzymes, Nature’s catalysts, facilitate a vast range of reactions under moderateconditions, with ide...
Mimicking the substrate specificity and catalytic activity of enzymes is of great interest for diffe...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
We report polymer-promoted cooperative catalysis of Cu for oxygen activation. A series of random cop...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
Polymer-bound imidazole-copper(II) complexes were investigated and applied as catalysts for oxidativ...
The quest for the construction of artificial enzyme models able to mimic the activity of metalloenzy...
The quest for the construction of artificial enzyme models able to mimic the activity of metalloenzy...
A strategy to improve the catalytic activity of transitional metal-based catalysis in the complex bi...
The quest for the construction of artificial enzyme models able to mimic the activity of metalloenzy...
“Clickase” single-chain nanoparticles (Ck-SCNPs) are folded, enzyme-mimetic unimolecular polymeric n...
Enzymes, Nature’s catalysts, facilitate a vast range of reactions under moderateconditions, with ide...
Enzymes, Nature’s catalysts, facilitate a vast range of reactions under moderateconditions, with ide...
Enzymes, Nature’s catalysts, facilitate a vast range of reactions under moderateconditions, with ide...
Mimicking the substrate specificity and catalytic activity of enzymes is of great interest for diffe...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
We report polymer-promoted cooperative catalysis of Cu for oxygen activation. A series of random cop...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
In order to combine the advantages of both homogeneous and heterogeneous catalysis, an immobilized m...
Polymer-bound imidazole-copper(II) complexes were investigated and applied as catalysts for oxidativ...