Immobilization experiments have been performed with glucose oxidase as enzyme and controlled‐pore glass of different pore sizes as support for chemical coupling. The experimental results have been analyzed for comparison with the theoretical model predictions. Analysis of the initial stage of the process gives the fundamental characteristic of the immobilization reaction. These investigations allow us to study the influence of the degree of diffusional restriction on the evolution of the immobilization process and spatial distribution of immobilized enzyme. Nonuniformly distributed concentrations have been achieved within the porous matrix, and suggestions have been made in designing such profiles by choosing appropriate experimental parame...
International audienceGlucose oxidase (GOx) immobilization onto mesoporous SBA-15 silica and two mes...
Glucose oxidase (GOD) was immobilized on cellulose acetate–polymethylmethacrylate (CA–PMMA) membrane...
International audienceA technique of immobilizing very thin layer of enzymes over glass electrodes, ...
A restricted diffusion model is developed to study the immobilization of enzyme in porous solid supp...
Experiments have been carried out for immobilizing enzyme-catalase and amyloglucosidase in controlle...
The total and active immobilized enzyme (IME) distributions in porous supports are studied both theo...
Glucose oxidase (GOD) was immobilized in a poly(2-hydroxyethyl methacrylate) (HEMA) membrane through...
The process of enzyme immobilization under the diffusion-controlled regime (i.e., fast attachment of...
Glucose oxidase (GOD) enzyme is widely used as a sensing molecule for glucose and is thus immobilize...
Immobilization of enzymes on solid surfaces has become a fundamental technique for the preparation o...
Large pore ordered mesoporous silica FDU-1 with three-dimensional (3D) face-centered cubic, Fm3m arr...
Immobilization of enzymes on solid surfaces has become a fundamental technique for the preparation o...
Large pore ordered mesoporous silica FDU-1 with three-dimensional (3D) face-centered cubic, Fm3m arr...
The focus of this thesis is placed on the dynamic behavior of proteins in confining environments whi...
A theoretical study is presented dealing with the immobilization of two enzymes into a porous solid ...
International audienceGlucose oxidase (GOx) immobilization onto mesoporous SBA-15 silica and two mes...
Glucose oxidase (GOD) was immobilized on cellulose acetate–polymethylmethacrylate (CA–PMMA) membrane...
International audienceA technique of immobilizing very thin layer of enzymes over glass electrodes, ...
A restricted diffusion model is developed to study the immobilization of enzyme in porous solid supp...
Experiments have been carried out for immobilizing enzyme-catalase and amyloglucosidase in controlle...
The total and active immobilized enzyme (IME) distributions in porous supports are studied both theo...
Glucose oxidase (GOD) was immobilized in a poly(2-hydroxyethyl methacrylate) (HEMA) membrane through...
The process of enzyme immobilization under the diffusion-controlled regime (i.e., fast attachment of...
Glucose oxidase (GOD) enzyme is widely used as a sensing molecule for glucose and is thus immobilize...
Immobilization of enzymes on solid surfaces has become a fundamental technique for the preparation o...
Large pore ordered mesoporous silica FDU-1 with three-dimensional (3D) face-centered cubic, Fm3m arr...
Immobilization of enzymes on solid surfaces has become a fundamental technique for the preparation o...
Large pore ordered mesoporous silica FDU-1 with three-dimensional (3D) face-centered cubic, Fm3m arr...
The focus of this thesis is placed on the dynamic behavior of proteins in confining environments whi...
A theoretical study is presented dealing with the immobilization of two enzymes into a porous solid ...
International audienceGlucose oxidase (GOx) immobilization onto mesoporous SBA-15 silica and two mes...
Glucose oxidase (GOD) was immobilized on cellulose acetate–polymethylmethacrylate (CA–PMMA) membrane...
International audienceA technique of immobilizing very thin layer of enzymes over glass electrodes, ...