AbstractAn oxygen reducing electrode made of bilirubin oxidase and multi-walled carbon nanotubes (BOD-MWCNT-Au electrode) is coupled to enzymes catalysing oxygen-consuming reactions such as glucose oxidase (GOD) to result in a membrane-free bienzyme electrode. The feasibility of such a molecularly assembled system stabilized by covalent linkage has been demonstrated. The electrochemical characterisation of the bienzyme electrode reveals sensitivity to the enzyme substrate. The results indicate that the BOD-electrode provides a suitable platform for sensing analytes for which oxidases of high activity are available
The direct electrochemistry of glucose oxidase (GOD) was revealed at a carbon nanotube (CNT)-modifie...
A new redox polymer/bilirubin oxidase (BOD)-based gas diffusion electrode was designed to be impleme...
A simple procedure has been described for the fabrication of multi-wall carbon nanotube (CNT) based ...
AbstractAn oxygen reducing electrode made of bilirubin oxidase and multi-walled carbon nanotubes (BO...
An oxygen reducing electrode made of bilirubin oxidase and multi-walled carbon nanotubes (BOD-MWCNT-...
Gold disk electrodes modified with gold nanoparticles have been used as a scaffold for the covalent ...
International audienceDue to the lack of a valid approach in the design of electrochemical interface...
International audienceDue to the lack of a valid approach in the design of electrochemical interface...
International audienceDue to the lack of a valid approach in the design of electrochemical interface...
International audienceThe nature, the composition and the concentration of electrolytes is essential...
Mediator-less, direct electro-catalytic reduction of oxygen to water by bilirubin oxidase (Myrotheci...
Electrode materials play an important role on the electrocatalytic properties of immobilized biocata...
The direct electrochemistry of glucose oxidase (GOD) was revealed at a carbon nanotube (CNT)-modifie...
The direct electrochemistry of glucose oxidase (GOD) was revealed at a carbon nanotube (CNT)-modifie...
With annual global energy consumption predicted to double by 2050 and CO2 emissions having already r...
The direct electrochemistry of glucose oxidase (GOD) was revealed at a carbon nanotube (CNT)-modifie...
A new redox polymer/bilirubin oxidase (BOD)-based gas diffusion electrode was designed to be impleme...
A simple procedure has been described for the fabrication of multi-wall carbon nanotube (CNT) based ...
AbstractAn oxygen reducing electrode made of bilirubin oxidase and multi-walled carbon nanotubes (BO...
An oxygen reducing electrode made of bilirubin oxidase and multi-walled carbon nanotubes (BOD-MWCNT-...
Gold disk electrodes modified with gold nanoparticles have been used as a scaffold for the covalent ...
International audienceDue to the lack of a valid approach in the design of electrochemical interface...
International audienceDue to the lack of a valid approach in the design of electrochemical interface...
International audienceDue to the lack of a valid approach in the design of electrochemical interface...
International audienceThe nature, the composition and the concentration of electrolytes is essential...
Mediator-less, direct electro-catalytic reduction of oxygen to water by bilirubin oxidase (Myrotheci...
Electrode materials play an important role on the electrocatalytic properties of immobilized biocata...
The direct electrochemistry of glucose oxidase (GOD) was revealed at a carbon nanotube (CNT)-modifie...
The direct electrochemistry of glucose oxidase (GOD) was revealed at a carbon nanotube (CNT)-modifie...
With annual global energy consumption predicted to double by 2050 and CO2 emissions having already r...
The direct electrochemistry of glucose oxidase (GOD) was revealed at a carbon nanotube (CNT)-modifie...
A new redox polymer/bilirubin oxidase (BOD)-based gas diffusion electrode was designed to be impleme...
A simple procedure has been described for the fabrication of multi-wall carbon nanotube (CNT) based ...