Nanoporous silica suitable for enzyme support was synthesized via a salt route and the pore morphology in the silica was characterized. Then, Glutaryl-7-ACA acylase—the enzyme for the bioconversion process to synthesize an antibiotic—was immobilized and the enzyme activity was investigated in relation to the pore morphology. It became clear that the activity of the enzyme was influenced to a great extent by the pore size and there existed an optimum pore size that lead to the maximum activity of the enzyme. In this study, the optimum pore size (diameter) was found to be 60.9 nm at which the enzyme activity was maximized to 97 units/g
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
1795-1803Three silica supports, namely SBA15, silica-N and silica-AC, having different pore size d...
Mesoporous silicates (MPS) possess ordered pore structures with pore diameters sufficiently large to...
A simple method for the preparation of silica with controlled pore size, for use as a support for th...
Mesoporous silica nanoparticles provide a non-invasive and biocompatible delivery platform for a bro...
A simple method is used to covalently encapsulate enzymes in silica nanoparticles. The encapsulation...
Catalysts are widely used in many industries for production of chemicals, pharmaceuticals, fuels and...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
The application of enzymes presents a great advantage regarding highly selective reactions; however,...
Enzymes are highly effective and versatile biological catalysts, with a high chemo-, stereo- and reg...
The encapsulation of enzymes in wet, nanoporous silica gels is a powerful strategy to exploit the ca...
The use of mesoporous molecular sieves in enzyme immobilisation has been studied. Three different ty...
The development of enzyme modules by coupling several enzymes in confinement is of paramount importa...
Enzymes have been increasingly used as sustainable biocatalysts for a broad range of applications ra...
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
1795-1803Three silica supports, namely SBA15, silica-N and silica-AC, having different pore size d...
Mesoporous silicates (MPS) possess ordered pore structures with pore diameters sufficiently large to...
A simple method for the preparation of silica with controlled pore size, for use as a support for th...
Mesoporous silica nanoparticles provide a non-invasive and biocompatible delivery platform for a bro...
A simple method is used to covalently encapsulate enzymes in silica nanoparticles. The encapsulation...
Catalysts are widely used in many industries for production of chemicals, pharmaceuticals, fuels and...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
Immobilized enzymes on silica nano-carriers are stable biocatalysts with the potential for use in a ...
The application of enzymes presents a great advantage regarding highly selective reactions; however,...
Enzymes are highly effective and versatile biological catalysts, with a high chemo-, stereo- and reg...
The encapsulation of enzymes in wet, nanoporous silica gels is a powerful strategy to exploit the ca...
The use of mesoporous molecular sieves in enzyme immobilisation has been studied. Three different ty...
The development of enzyme modules by coupling several enzymes in confinement is of paramount importa...
Enzymes have been increasingly used as sustainable biocatalysts for a broad range of applications ra...
Mesostructured silica nanoparticles offer a unique opportunity in the field of biocatalysis thanks t...
1795-1803Three silica supports, namely SBA15, silica-N and silica-AC, having different pore size d...
Mesoporous silicates (MPS) possess ordered pore structures with pore diameters sufficiently large to...