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Synthesis and application of polypyrrole/carrageenan nano-bio composite as a cathode catalyst in microbial fuel cells
journal contribution
posted on 2023-02-07, 01:26 authored by C Esmaeili, M Ghasemi, LY Heng, SHA Hassan, MM Abdi, WRW Daud, Hamid IlbeygiHamid Ilbeygi, AF IsmailA novel nano-bio composite polypyrrole (PPy)/kappa-carrageenan(KC) was fabricated and characterized for application as a cathode catalyst in a microbial fuel cell (MFC). High resolution SEM and TEM verified the bud-like shape and uniform distribution of the PPy in the KC matrix. X-ray diffraction (XRD) has approved the amorphous structure of the PPy/KC as well. The PPy/KC nano-bio composites were then studied as an electrode material, due to their oxygen reduction reaction (ORR) ability as the cathode catalyst in the MFC and the results were compared with platinum (Pt) as the most common cathode catalyst. The produced power density of the PPy/KC was 72.1 mW/m2 while it was 46.8 mW/m2 and 28.8 mW/m2 for KC and PPy individually. The efficiency of the PPy/KC electrode system is slightly lower than a Pt electrode (79.9 mW/m2) but due to the high cost of Pt electrodes, the PPy/KC electrode system has potential to be an alternative electrode system for MFCs. © 2014 Elsevier Ltd.
History
Journal
Carbohydrate PolymersVolume
114Pagination
253-259Location
EnglandPublisher DOI
ISSN
0144-8617eISSN
1879-1344Language
EnglishPublisher
ELSEVIER SCI LTDUsage metrics
Categories
Keywords
Science & TechnologyPhysical SciencesChemistry, AppliedChemistry, OrganicPolymer ScienceChemistryKappa-carrageenanPolypyroleNano-bio compositeCathode catalystMicrobial fuel cellPOLYPYRROLECARBONNANOPARTICLESFILMSGENERATIONTYROSINASEBIOSENSORMEMBRANESPLATINUMBioelectric Energy SourcesCarrageenanCatalysisNanocompositesPolymersPyrroles7 Affordable and Clean EnergyMacromolecular and Materials Chemistry not elsewhere classifiedFood Sciences not elsewhere classifiedOrganic Chemistry