International audienceCatalytic four-electron reduction of O2 to water is one of the most extensively studied electrochemical reactions due to O2 exceptional availability and high O2/H2O redox potential, which may in particular allow highly energetic reactions in fuel cells. To circumvent the use of expensive and inefficient Pt catalysts, multicopper oxidases (MCOs) have been envisioned because they provide efficient O2 reduction with almost no overpotential. MCOs have been used to elaborate enzymatic biofuel cells (EBFCs), a subclass of fuel cells in which enzymes replace the conventional catalysts. A glucose/O2 EBFC, with a glucose oxidizing anode and a O2 reducing MCO cathode, could become the in vivo source of electricity that would pow...
Enzymatic fuel cells (EFCs) are bioelectronic devices based on redox enzymes, which convert chemical...
Enzymatic fuel cells convert the chemical energy of biofuels into electrical energy. Unlike traditio...
Six biocathodes catalyzing oxygen reduction were designed from the same environmental inoculum but u...
International audienceCatalytic four-electron reduction of O2 to water is one of the most extensivel...
Biological Fuel Cells (BFCs) use biological catalysts to convert chemical energy into electrical ene...
During the last years biofuel fuel cells (BFCs) have attracted great interest due to their possible ...
The objective of this thesis was to investigate the integration of enzymes and redox mediators capab...
This thesis focuses on studies of both enzymatic (EFC) and microbial (MFC) fuel cells. In the enzyma...
AbstractIn this mini-review we briefly describe some historical developments made in the field of en...
pre-printLaccase, a blue multicopper oxidoreductase enzyme, is a robust enzyme that catalyzes the re...
International audienceThis paper reports the development and optimisation of a glucose/O-2 biofuel c...
In recent years, enzymatic fuel cells have experienced a great development promoted by the availabil...
With annual global energy consumption predicted to double by 2050 and CO2 emissions having already r...
Miniaturized glucose-oxygen biofuel cells are useful to power implantable medical devices such as b...
Enzymatic biofuel cells may become more accessible for applications powering portable or implantable...
Enzymatic fuel cells (EFCs) are bioelectronic devices based on redox enzymes, which convert chemical...
Enzymatic fuel cells convert the chemical energy of biofuels into electrical energy. Unlike traditio...
Six biocathodes catalyzing oxygen reduction were designed from the same environmental inoculum but u...
International audienceCatalytic four-electron reduction of O2 to water is one of the most extensivel...
Biological Fuel Cells (BFCs) use biological catalysts to convert chemical energy into electrical ene...
During the last years biofuel fuel cells (BFCs) have attracted great interest due to their possible ...
The objective of this thesis was to investigate the integration of enzymes and redox mediators capab...
This thesis focuses on studies of both enzymatic (EFC) and microbial (MFC) fuel cells. In the enzyma...
AbstractIn this mini-review we briefly describe some historical developments made in the field of en...
pre-printLaccase, a blue multicopper oxidoreductase enzyme, is a robust enzyme that catalyzes the re...
International audienceThis paper reports the development and optimisation of a glucose/O-2 biofuel c...
In recent years, enzymatic fuel cells have experienced a great development promoted by the availabil...
With annual global energy consumption predicted to double by 2050 and CO2 emissions having already r...
Miniaturized glucose-oxygen biofuel cells are useful to power implantable medical devices such as b...
Enzymatic biofuel cells may become more accessible for applications powering portable or implantable...
Enzymatic fuel cells (EFCs) are bioelectronic devices based on redox enzymes, which convert chemical...
Enzymatic fuel cells convert the chemical energy of biofuels into electrical energy. Unlike traditio...
Six biocathodes catalyzing oxygen reduction were designed from the same environmental inoculum but u...