Cyclic voltammograms of yeast extract-containing medium exhibit a clear redox peak around -0.4 V vs. Agl AgCl. Fermentative bacterium Lactococcus lactis was hereby shown to exploit this redox compound for extracellular electron transfer towards a graphite anode using glucose as an electron donor. High performance liquid chromatography revealed that this may be a flavin-type compound. The ability of L lactis to exploit exogenous Flavins for anodic glucose oxidation was confirmed by tests where Flavin-type compounds were supplied to the bacterium in well defined media. Based on its mid-point potential, riboflavin can be regarded as a near-optimal mediator for microbially catalyzed anodic electron transfer. Riboflavin derivative Flavin mononuc...
In nature as well as in industrial microbiology, all microorganisms need to achieve redox balance. T...
Microbial fuel cell (MFC) efficiency depends on charge transfer capability from microbe to anode, an...
International audienceYeast microbial fuel cells have received little attention to date. Yeast shoul...
Lactococcus lactis is a gram-positive, normally homolactic fermenter that is known to produce severa...
Faecalibacterium prausnitzii is one of the most abundant commensal microbes in the human gut. It is ...
Microbes can generate electricity in microbial fuel cells and transform contaminants in nature, util...
A Janus head-like bi-cathodic microbial fuel cell was constructed to monitor the electron transfer f...
Microbial electrochemical technologies (MET) are promising to drive metabolic processes for the prod...
High-rate electron transfer toward an anode in microbial fuel cells(MFCs) has thus far not been desc...
Energy conservation in microorganisms is classically categorized into respiration and fermentation; ...
Over the years alternative energy sources such as microbial biofuel cells (MBFC) are becoming more p...
Shewanella oneidensis is one of the best-understood model organisms for extracellular electron trans...
Microbial fuel cells (MFCs) using yeasts are known to produce less energy than those using bacteria....
Electron Transfer in Multicenter Flavoenzymes Multicenter flavoenzymes that belong to dehydrogenases...
A subset of microorganisms that perform respiration can endogenously utilize insoluble electron dono...
In nature as well as in industrial microbiology, all microorganisms need to achieve redox balance. T...
Microbial fuel cell (MFC) efficiency depends on charge transfer capability from microbe to anode, an...
International audienceYeast microbial fuel cells have received little attention to date. Yeast shoul...
Lactococcus lactis is a gram-positive, normally homolactic fermenter that is known to produce severa...
Faecalibacterium prausnitzii is one of the most abundant commensal microbes in the human gut. It is ...
Microbes can generate electricity in microbial fuel cells and transform contaminants in nature, util...
A Janus head-like bi-cathodic microbial fuel cell was constructed to monitor the electron transfer f...
Microbial electrochemical technologies (MET) are promising to drive metabolic processes for the prod...
High-rate electron transfer toward an anode in microbial fuel cells(MFCs) has thus far not been desc...
Energy conservation in microorganisms is classically categorized into respiration and fermentation; ...
Over the years alternative energy sources such as microbial biofuel cells (MBFC) are becoming more p...
Shewanella oneidensis is one of the best-understood model organisms for extracellular electron trans...
Microbial fuel cells (MFCs) using yeasts are known to produce less energy than those using bacteria....
Electron Transfer in Multicenter Flavoenzymes Multicenter flavoenzymes that belong to dehydrogenases...
A subset of microorganisms that perform respiration can endogenously utilize insoluble electron dono...
In nature as well as in industrial microbiology, all microorganisms need to achieve redox balance. T...
Microbial fuel cell (MFC) efficiency depends on charge transfer capability from microbe to anode, an...
International audienceYeast microbial fuel cells have received little attention to date. Yeast shoul...