A planar boron-doped diamond (BDD) electrode was treated with KOH and functionalized with 3-aminopropyltriethoxysilane (APTES) to serve as a biosensing platform for biomolecule immobilization with glucose oxidase (GOx) as a test model. The free amino groups of GOx and APTES were cross-linked by glutaraldehyde (X), a bifunctional chemical to form a stable enzyme layer (GOx-X-APTES) on BDD. Micrographs obtained by scanning electron microscopy revealed that a mesoporous structure uniformly covered the BDD surface. Cyclic voltammetry of GOx immobilized showed a pair of well-defined redox peaks in neutral phosphate buffer solution, corresponding to the direct electron transfer of GOx. The apparent heterogeneous electron transfer rate constant of...
A fast and simple immobilization of glucose oxidase (GOx) used for fabrication of highly sensitive, ...
In this work the electrooxidations of glucose, galactose, mannose, rhamnose, xylose and arabinose ar...
AuNP decorated GO nanocomposites (GO-Ph-AuNP) via aryldiazonium salt chemistry have been successfull...
Electrochemical sensing is a powerful tool for the rapid detection of (bio)molecules in fluids, and ...
International audienceBoron doped diamond (BDD) films are promising materials for electroanalysis an...
Glucose oxidase (GOx) is widely used in the glucose biosensor industry. However, mediatorless direct...
In this work, we report the modification of a gold electrode with undoped diamond nanoparticles (DNP...
A reagentless third generation electrochemical glucose biosensor was fabricated based on wiring the ...
Glucose oxidase (GO) was entrapped in an electrodeposited poly(tyramine) film together with a negati...
For the biofunctionalization of electronic devices, polymer brushes can provide a route which allows...
In this work, we report the effect of the direct successive modifications with Glucose oxidase onto ...
Efficient direct electron transfer (DET) between a cellobiose dehydrogenase mutant from Corynascus t...
Efficient direct electron transfer (DET) between a cellobiose dehydrogenase mutant from Corynascus t...
Glucose sensing electrodes have been realized by immobilizing glucose oxidase (GOx) on unmodified ed...
Utilization of carbon nanodots (CNDs), newcomers to the world of carbonaceous nanomaterials, in the ...
A fast and simple immobilization of glucose oxidase (GOx) used for fabrication of highly sensitive, ...
In this work the electrooxidations of glucose, galactose, mannose, rhamnose, xylose and arabinose ar...
AuNP decorated GO nanocomposites (GO-Ph-AuNP) via aryldiazonium salt chemistry have been successfull...
Electrochemical sensing is a powerful tool for the rapid detection of (bio)molecules in fluids, and ...
International audienceBoron doped diamond (BDD) films are promising materials for electroanalysis an...
Glucose oxidase (GOx) is widely used in the glucose biosensor industry. However, mediatorless direct...
In this work, we report the modification of a gold electrode with undoped diamond nanoparticles (DNP...
A reagentless third generation electrochemical glucose biosensor was fabricated based on wiring the ...
Glucose oxidase (GO) was entrapped in an electrodeposited poly(tyramine) film together with a negati...
For the biofunctionalization of electronic devices, polymer brushes can provide a route which allows...
In this work, we report the effect of the direct successive modifications with Glucose oxidase onto ...
Efficient direct electron transfer (DET) between a cellobiose dehydrogenase mutant from Corynascus t...
Efficient direct electron transfer (DET) between a cellobiose dehydrogenase mutant from Corynascus t...
Glucose sensing electrodes have been realized by immobilizing glucose oxidase (GOx) on unmodified ed...
Utilization of carbon nanodots (CNDs), newcomers to the world of carbonaceous nanomaterials, in the ...
A fast and simple immobilization of glucose oxidase (GOx) used for fabrication of highly sensitive, ...
In this work the electrooxidations of glucose, galactose, mannose, rhamnose, xylose and arabinose ar...
AuNP decorated GO nanocomposites (GO-Ph-AuNP) via aryldiazonium salt chemistry have been successfull...