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Process Biochemistry, ISSN 1359-5113, 12/2012, Volume 47, Issue 12, pp. 1707 - 1714
Journal Article
Electrochimica Acta, ISSN 0013-4686, 2010, Volume 55, Issue 3, pp. 813 - 818
The ability of some bacteria to enhance the rate of cathodic oxygen reduction to water has been recently discovered, opening the way to an entirely renewable... 
Insoluble electron donor | Oxygen reduction | Microbial fuel cell | Biocathode | Extracellular electron transfer | ELECTROCHEMISTRY | CATALYSIS | DIOXYGEN | SHEWANELLA | MEDIATOR | FUEL-CELLS | LACCASE | GRAPHITE-ELECTRODES | REDUCTION | ELECTRICITY-GENERATION | WATER
Journal Article
Bioresource Technology, ISSN 0960-8524, 05/2010, Volume 101, Issue 9, pp. 3085 - 3090
This study describes the performance of a microbial biocathode, based on a hydrogenophilic methanogenic culture, capable of reducing carbon dioxide to methane,... 
Bioelectrochemical systems (BES) | Methane production | Microbial biocathode | Extracellular electron transfer | ENERGY & FUELS | BIOFUEL CELLS | BIOCATHODE | MICROORGANISMS | AGRICULTURAL ENGINEERING | DECHLORINATION | BIOCATALYZED ELECTROLYSIS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GENERATION | TRICHLOROETHENE | MICROBIAL FUEL-CELLS | NANOWIRES | TETRACHLOROETHENE
Journal Article
Electrochimica Acta, ISSN 0013-4686, 08/2016, Volume 210, pp. 117 - 121
Microbes can generate electricity in microbial fuel cells and transform contaminants in nature, utilizing extracellular electron transfer (EET). Fungi exist... 
extracellular electron transfer | biogeochemical cycling | microbial fuel cells | Pachysolen tannophilus | riboflavin | ELECTROCHEMISTRY | FLAVIN NUCLEOTIDES | D-XYLOSE | IDENTIFICATION | YEAST | MICROORGANISMS | SYSTEMS | BIOREMEDIATION | SHEWANELLA-ONEIDENSIS MR-1 | HUMIC SUBSTANCES | CELL | Electrochemistry | Electron transport | Fuel cells | Analysis | Biogeochemical cycles
Journal Article