Carbon–carbon bond formation is the key transformation in organic synthesis to set up the carbon backbone of organic molecules. However, only a limited number of enzymatic C–C bond forming reactions have been applied in biocatalytic organic synthesis. Recently, further name reactions have been accomplished for the first time employing enzymes on a preparative scale, for instance the Stetter and Pictet–Spengler reaction or oxidative C–C bond formation. Furthermore, novel enzymatic C–C bond forming reactions have been identified like benzylation of aromatics, intermolecular Diels-Alder or reductive coupling of carbon monoxide
As industrial biocatalysis is maturing, access to enzymatic activities beyond chiral resolutions, as...
Organic chemistry provides society with fundamental products we use daily. Concerns about the impact...
The basis of organic chemistry is the study of carbon-containing compounds with the aim of manipulat...
Carboncarbon bond formation is the key transformation in organic synthesis to set up the carbon back...
Carbon–carbon bond formation is the key transformation in organic synthesis to set up the carbon bac...
Biocatalysts have shown themselves to be extremely powerful for the synthesis of pharmaceuticals, fr...
Biocatalysts have shown themselves to be extremely powerful for the synthesis of pharmaceuticals, fr...
Biocatalysts have shown themselves to be extremely powerful for the synthesis of pharmaceuticals, fr...
The microorganisms are able to utilize natural and synthetic compounds of broad structural diversity...
Ospina Sánchez F, Schülke KH, Hammer S. Biocatalytic Alkylation Chemistry: Building Molecular Comple...
AbstractEnzymes that catalyze carbon-carbon bond formation can be exploited as biocatalyst for synth...
Carbon–carbon forming reactions have always been the mainstay of conventional synthetic organic chem...
Enzymes that catalyze carbon-carbon bond formation can be exploited as biocatalyst for synthetic org...
Organic chemistry provides society with fundamental products we use daily. Concerns about the impact...
This chapter gives an overview of practical biocatalytic procedures for C-C bond-forming Michael(-ty...
As industrial biocatalysis is maturing, access to enzymatic activities beyond chiral resolutions, as...
Organic chemistry provides society with fundamental products we use daily. Concerns about the impact...
The basis of organic chemistry is the study of carbon-containing compounds with the aim of manipulat...
Carboncarbon bond formation is the key transformation in organic synthesis to set up the carbon back...
Carbon–carbon bond formation is the key transformation in organic synthesis to set up the carbon bac...
Biocatalysts have shown themselves to be extremely powerful for the synthesis of pharmaceuticals, fr...
Biocatalysts have shown themselves to be extremely powerful for the synthesis of pharmaceuticals, fr...
Biocatalysts have shown themselves to be extremely powerful for the synthesis of pharmaceuticals, fr...
The microorganisms are able to utilize natural and synthetic compounds of broad structural diversity...
Ospina Sánchez F, Schülke KH, Hammer S. Biocatalytic Alkylation Chemistry: Building Molecular Comple...
AbstractEnzymes that catalyze carbon-carbon bond formation can be exploited as biocatalyst for synth...
Carbon–carbon forming reactions have always been the mainstay of conventional synthetic organic chem...
Enzymes that catalyze carbon-carbon bond formation can be exploited as biocatalyst for synthetic org...
Organic chemistry provides society with fundamental products we use daily. Concerns about the impact...
This chapter gives an overview of practical biocatalytic procedures for C-C bond-forming Michael(-ty...
As industrial biocatalysis is maturing, access to enzymatic activities beyond chiral resolutions, as...
Organic chemistry provides society with fundamental products we use daily. Concerns about the impact...
The basis of organic chemistry is the study of carbon-containing compounds with the aim of manipulat...