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Comparison of bioelectrocatalysis at Trichaptum abietinum and Trametes hirsuta laccase modified electrodes Dagys M, Lamberg P, Shleev S, Niaura G, Bachmatova I, Marcinkeviciene L, Meskys R, Kulys J, Arnebrant T, Ruzgas T Electrochimica Acta, 130, 141, 2014 |
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Fluoroaromatic substituents attached to carbon nanotubes help to increase oxygen concentration on biocathode in biosensors and biofuel cells Karaskiewicz M, Biernat JF, Rogalski J, Roberts KP, Bilewicz R Electrochimica Acta, 112, 403, 2013 |
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Arylated carbon nanotubes for biobatteries and biofuel cells Stolarczyk K, Lyp D, Zelechowska K, Biernat JF, Rogalski J, Bilewicz R Electrochimica Acta, 79, 74, 2012 |
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Bioelectrochemical systems: Microbial versus enzymatic catalysis Freguia S, Virdis B, Harnisch F, Keller J Electrochimica Acta, 82, 165, 2012 |
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Bilirubin oxidase in multiple layers catalyzes four-electron reduction of dioxygen to water without redox mediators Tsujimura S, Kano K, Ikeda T Journal of Electroanalytical Chemistry, 576(1), 113, 2005 |
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Bioelectrocatalytic reduction of dioxygen to water at neutral pH using bilirubin oxidase as an enzyme and 2,2 '-azinobis (3-ethylbenzothiazolin-6-sulfonate) as an electron transfer mediator Tsujimura S, Tatsumi B, Ogawa J, Shimizu S, Kano K, Ikeda T Journal of Electroanalytical Chemistry, 496(1-2), 69, 2001 |