Enzyme immobilization in mesoporous materials is a field of great interest, with applications in biocatalysis and biosensing. However, the actual immobilization process is not well understood and has mainly been studied by indirect measurements. The present work demonstrates a direct method for real time study of enzyme immobilization in mesoporous silica particles using quartz crystal microbalance with dissipation monitoring (QCM-D). Silica-coated sensors were grafted with amine groups followed by adsorption of small (40 nm), spherical mesoporous silica particles, after which the enzyme immobilization into the mesoporous particles could be studied in real time. The influence of pH on the immobilization efficiency was studied using two diff...
Mesoporous silica nanoparticles provide a non-invasive and biocompatible delivery platform for a bro...
The use of mesoporous molecular sieves in enzyme immobilisation has been studied. Three different ty...
Enzymes display high reactivity and selectivity under normal conditions, but may suffer from denatur...
Enzyme immobilization in mesoporous materials is a field of great interest, with applications in bio...
Enzymes are highly effective and versatile biological catalysts, with a high chemo-, stereo- and reg...
Mesoporous silica particles have become a popular support material for enzymes used in biocatalytic ...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
The focus of this thesis is placed on the dynamic behavior of proteins in confining environments whi...
Enzymes as biological catalysts are immobilized in porous materials to improve the enzyme activity a...
Mesoporous silica particles are used as support material for immobilization of enzymes. Here we inve...
The immobilization behavior of lysozyme (LYZ) in mesoporous silicas (MPSs) with controlled morpholog...
Immobilization of enzymes usually improves the recyclability and stability and can sometimes also im...
Enzyme immobilization in porous silica particles is used to improve enzyme function in biocatalytic ...
The two enzymes Aspergillus sp. glucose oxidase (GOD) and horseradish peroxidase (HRP) were co-immob...
Catalysts are widely used in many industries for production of chemicals, pharmaceuticals, fuels and...
Mesoporous silica nanoparticles provide a non-invasive and biocompatible delivery platform for a bro...
The use of mesoporous molecular sieves in enzyme immobilisation has been studied. Three different ty...
Enzymes display high reactivity and selectivity under normal conditions, but may suffer from denatur...
Enzyme immobilization in mesoporous materials is a field of great interest, with applications in bio...
Enzymes are highly effective and versatile biological catalysts, with a high chemo-, stereo- and reg...
Mesoporous silica particles have become a popular support material for enzymes used in biocatalytic ...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
The focus of this thesis is placed on the dynamic behavior of proteins in confining environments whi...
Enzymes as biological catalysts are immobilized in porous materials to improve the enzyme activity a...
Mesoporous silica particles are used as support material for immobilization of enzymes. Here we inve...
The immobilization behavior of lysozyme (LYZ) in mesoporous silicas (MPSs) with controlled morpholog...
Immobilization of enzymes usually improves the recyclability and stability and can sometimes also im...
Enzyme immobilization in porous silica particles is used to improve enzyme function in biocatalytic ...
The two enzymes Aspergillus sp. glucose oxidase (GOD) and horseradish peroxidase (HRP) were co-immob...
Catalysts are widely used in many industries for production of chemicals, pharmaceuticals, fuels and...
Mesoporous silica nanoparticles provide a non-invasive and biocompatible delivery platform for a bro...
The use of mesoporous molecular sieves in enzyme immobilisation has been studied. Three different ty...
Enzymes display high reactivity and selectivity under normal conditions, but may suffer from denatur...