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Ethanol/O2 biofuel cell using a biocathode consisting of laccase/ HOOC-MWCNTs/polydiallyldimethylammonium chloride
Farideh Gouranlou1, Hedayatollah Ghourchian1
1Laboratory of Microanalysis, Institute of Biochemistry & Biophysics, University of Tehran, Tehran, Iran.
Abstract:
In the present report we focused on the substitution of metallic catalysts by biocatalysts to develop a high efficient biofuel cell. A bioanode and a biocathode were designed using ADH and laccase, respectively. Carboxylated multiwall carbon nanotubes (HOOC-MWCNTs) and polydiallyldimethylammonium chloride (PDDA) were used for immobilizing the enzymes on either polymethylene green (PMG) modified glassy carbon or graphite electrodes. In this way, an ethanol-oxygen biofuel cell was designed in which PDDA/ADH/PDDA/HOOC-MWCNTs/PMG/GC and PDDA/Lac/PDDA/HOOC-MWCNTs/PMG/Gr operated as bioanode and biocathode, respectively. In the optimized condition of O2 saturated PBS (0.1M, pH 7.5) containing 1mM ethanol and 1mM NAD(+) the open-circuit voltage reached to a plateau at 504mV based of which the power density of 3.98mWcm(-2) was obtained.
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