The supramolecular approach is becoming increasingly dominant in biomimetics and chemical catalysis due to the expansion of the enzyme active center idea, which now includes binding cavities (hydrophobic pockets), channels and canals for transporting substrates and products. For a long time, the mimetic strategy was mainly focused on the first coordination sphere of the metal ion. Understanding that a highly organized cavity-like enzymatic pocket plays a key role in the sophisticated functionality of enzymes and that the activity and selectivity of natural metalloenzymes are due to the effects of the second coordination sphere, created by the protein framework, opens up new perspectives in biomimetic chemistry and catalysis. There are two m...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
AbstractA central goal of modern sustainable chemistry is to convert feedstock chemicals to more fun...
Metal-organic supramolecular chemistry on surfaces has matured to a point where its underlying growt...
Enzymes are catalysts found in nature that show high rate accelerations and substrate selectivity co...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
While chemists are developing confined environments for catalysis, nature has evolved highly elabora...
Traditional homogeneous catalysis applies catalysts based on organometallic complexes which are tune...
The development of artificial photosynthetic technologies able to produce solar-fuels from CO2 reduc...
Cellular compartmentalization enables enzymes to perform complex sequences of chemical transformatio...
Transfer hydrogenation reactions can yield a diverse range of chiral products to be used as such, or...
We describe an innovative strategy to generate catalytic compartments with triggered functionality a...
Residing at the interface of chemistry and biotechnology, artificial metalloenzymes offer an attract...
Transfer hydrogenation reactions can yield a diverse range of chiral products to be used as such, or...
Conspectus Supramolecular bioinorganic chemistry is a natural evolution in biomimetic metallic syste...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
AbstractA central goal of modern sustainable chemistry is to convert feedstock chemicals to more fun...
Metal-organic supramolecular chemistry on surfaces has matured to a point where its underlying growt...
Enzymes are catalysts found in nature that show high rate accelerations and substrate selectivity co...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
While chemists are developing confined environments for catalysis, nature has evolved highly elabora...
Traditional homogeneous catalysis applies catalysts based on organometallic complexes which are tune...
The development of artificial photosynthetic technologies able to produce solar-fuels from CO2 reduc...
Cellular compartmentalization enables enzymes to perform complex sequences of chemical transformatio...
Transfer hydrogenation reactions can yield a diverse range of chiral products to be used as such, or...
We describe an innovative strategy to generate catalytic compartments with triggered functionality a...
Residing at the interface of chemistry and biotechnology, artificial metalloenzymes offer an attract...
Transfer hydrogenation reactions can yield a diverse range of chiral products to be used as such, or...
Conspectus Supramolecular bioinorganic chemistry is a natural evolution in biomimetic metallic syste...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
Self-assembled metal organic cages are supramolecular compounds with a unique internal cavity capabl...
AbstractA central goal of modern sustainable chemistry is to convert feedstock chemicals to more fun...
Metal-organic supramolecular chemistry on surfaces has matured to a point where its underlying growt...