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Thionine and ferric chelate compounds as coupled mediators in microbial fuel cellsTANAKA, K; VEGA, C. A; TAMAMUSHI, R et al.Journal of electroanalytical chemistry and interfacial electrochemistry. 1983, Vol 11, Num 4-6, pp 289-297, issn 0022-0728Article

Electrochemical conversion in biofuel cells using Clostridium butyricum or Staphylococcus aureus OxfordARDELEANU, I; MARGINEANU, D.-G; VAIS, H et al.Journal of electroanalytical chemistry and interfacial electrochemistry. 1983, Vol 11, Num 4-6, pp 273-277, issn 0022-0728Article

Interception of the electron-transport chain in bacteria with hydrophilic redox mediators. I: Selective improvement of the performance of biofuel cells with 2,6-disulphonated thionine as mediatorLITHGOW, A. M; ROMERO, L; SANCHEZ, I. C et al.Journal of chemical research. Synopses (Print). 1986, Num 5, pp 178-179, issn 0308-2342Article

Applications of direct electron transfer bioelectrochemistry in sensors and fuel cellsTURNER, A. P. F.International conference on the commercial applications and implications of biotechnology. 1. 1983, pp 643-654Conference Paper

Microbes come to powerBENNETTO, P.New scientist (1971). 1987, Vol 114, Num 1556, pp 36-39, issn 0262-4079Article

The sucrose fuel cell: efficient biomass conversion using a microbial catalystBENNETTO, H. P; DELANEY, G. M; MASON, J. R et al.Biotechnology letters. 1985, Vol 7, Num 10, pp 699-704, issn 0141-5492Article

Multiphase Electrode Microbial Fuel Cell System that Simultaneously Converts Organics Coexisting in Water and Sediment phases into ElectricityJUNYAONG AN; HYUNSOO MOON; IN SHOP CHANG et al.Environmental science & technology. 2010, Vol 44, Num 18, pp 7145-7150, issn 0013-936X, 6 p.Article

Electron-transfer coupling in microbial fuel cells: 1. Comparison of Redox-mediator reduction rates and respiratory rates of bacteriaROLLER, S. D; BENNETTO, H. P; DELANEY, G. M et al.Journal of chemical technology and biotechnology. B: biotechnology. 1984, Vol 34, Num 1, pp 3-12Article

A biofuel cell for utilisation of lactoses wastesROLLER, S. D; BENNETTO, H. P; DELANEY, G. M et al.International conference on the commercial applications and implications of biotechnology. 1. 1983, pp 655-663Conference Paper

RELATION BETWEEN BIOLOGICAL PARAMETERS AND THE BIOELECTROCHEMICAL FUEL-CELL RESPONSEDISALVO EA; VIDELA HA.1979; J. ELECTROANAL. CHEM. INTERFACIAL ELECTROCHEM.; NLD; DA. 1979; VOL. 6; NO 2; PP. 185-195; BIBL. 9 REF.Article

PILE DE COMBUSTIE BIOCHIMICE = LES PILES A COMBUSTIBLE BIOCHIMIQUESONICIU L; BESE L.1980; REV. CHIM.; ROM; DA. 1980; VOL. 31; NO 10; PP. 947-952; ABS. ENG/RUS; BIBL. 28 REF.Article

BIOMASS CONVERSION TO ELECTRIC ENERGYSUZUKI S; AIZAWA M.1980; J. FUEL SOC. JAP.; JPN; DA. 1980; VOL. 59; NO 3; PP. 164-170; ABS. ENG; BIBL. 40 REF.Article

High power enzymatic biofuel cell based on naphthoquinone-mediated oxidation of glucose by glucose oxidase in a carbon nanotube 3D matrixREUILLARD, Bertrand; LE GOFF, Alan; AGNES, Charles et al.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 14, pp 4892-4896, issn 1463-9076, 5 p.Article

Hydrogenase enzymes: Application in biofuel cells and inspiration for the design of noble-metal free catalysts for H2 oxidationCHENEVIER, Pascale; MUGHERLI, Laurent; ARTERO, Vincent et al.Comptes rendus. Chimie. 2013, Vol 16, Num 5, pp 491-505, issn 1631-0748, 15 p.Article

Anaerobes unleashed: Aerobic fuel cells of Geobacter sulfurreducensNEVIN, Kelly P; PEI ZHANG; FRANKS, Ashley E et al.Journal of power sources (Print). 2011, Vol 196, Num 18, pp 7514-7518, issn 0378-7753, 5 p.Article

Experimental study of the microbial fuel cell internal resistanceZHANG, Pei-Yuan; LIU, Zhong-Liang.Journal of power sources (Print). 2010, Vol 195, Num 24, pp 8013-8018, issn 0378-7753, 6 p.Article

Glucose metabolism in a microbial fuel cell. Stoichiometry of product formation in a thionine-mediated Proteus vulgaris fuel cell and its relation to coulombic yieldsTHURSTON, C. F; BENNETTO, H. P; DELANEY, G. M et al.Journal of General and Applied Microbiology. 1985, Vol 131, Num 6, pp 1393-1401, issn 0022-1260Article

Enhancing charge harvest from microbial fuel cells by controlling the charging and discharging frequency of capacitorsSHITING REN; XUE XIA; LULU YUAN et al.Bioresource technology. 2013, Vol 146, pp 812-815, issn 0960-8524, 4 p.Article

Internal resistance of microfluidic microbial fuel cell: Challenges and potential opportunitiesELMEKAWY, Ahmed; HEGAB, Hanaa M; DOMINGUEZ-BENETTON, Xochitl et al.Bioresource technology. 2013, Vol 142, pp 672-682, issn 0960-8524, 11 p.Article

Performance of microbial fuel cells on removal of metronidazoleHONG SONG; WEI GUO; MENGLIN LIU et al.Water science and technology. 2013, Vol 68, Num 12, pp 2599-2604, issn 0273-1223, 6 p.Article

Improved microbial electrocatalysis with neutral red immobilized electrodeKAIPENG WANG; YUWEN LIU; SHENGLI CHEN et al.Journal of power sources (Print). 2011, Vol 196, Num 1, pp 164-168, issn 0378-7753, 5 p.Article

Recent progress in electrodes for microbial fuel cellsJINCHENG WEI; PENG LIANG; XIA HUANG et al.Bioresource technology. 2011, Vol 102, Num 20, pp 9335-9344, issn 0960-8524, 10 p.Article

Mediated electron transfer in glucose oxidising enzyme electrodes for application to biofuel cells: recent progress and perspectivesKAVANAGH, Paul; LEECH, Dónal.PCCP. Physical chemistry chemical physics (Print). 2013, Vol 15, Num 14, pp 4859-4869, issn 1463-9076, 11 p.Article

Towards a rechargeable alcohol biobatteryADDO, Paul K; ARECHEDERRA, Robert L; MINTEER, Shelley D et al.Journal of power sources (Print). 2011, Vol 196, Num 7, pp 3448-3451, issn 0378-7753, 4 p.Conference Paper

A quinhydrone biofuel cell based on an enzyme-induced pH gradientGIROUD, Fabien; GONDRAN, Chantal; GORGY, Karine et al.Journal of power sources (Print). 2011, Vol 196, Num 3, pp 1329-1332, issn 0378-7753, 4 p.Article

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