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Carbon Nanotube PtSn Nanoparticles for Enhanced Complete Biocatalytic Oxidation of Ethylene Glycol in Biofuel Cells

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Autor(es):
Antonio, Jesimiel Glaycon Rodrigues ; Franco, Jefferson Honorio ; Almeida, Paula Z. ; Almeida, Thiago S. ; Teixeira de Morais Polizeli, Maria de Lourdes ; Minteer, Shelley D. ; de Andrade, Adalgisa Rodrigues
Número total de Autores: 7
Tipo de documento: Artigo Científico
Fonte: ACS MATERIALS AU; v. 2, n. 2, p. 9-pg., 2022-03-09.
Resumo

We report a hybrid catalytic system containing metallic PtSn nanoparticles deposited on multiwalled carbon nanotubes (Pt65Sn35/MWCNTs), prepared by the microwave-assisted method, coupled to the enzyme oxalate oxidase (OxOx) for complete ethylene glycol (EG) electrooxidation. Pt65Sn35/MWCNTs, without OxOx, showed good electrochemical activity toward EG oxidation and all the byproducts. Pt65Sn35/MWCNTs cleaved the glyoxilic acid C-C bond, producing CO2 and formic acid, which was further oxidized at the electrode. Concerning EG oxidation, the catalytic activity of the hybrid system (Pt65Sn35/MWCNTs+OxOx) was twice the catalytic activity of Pt65Sn35/MWCNTs. Long-term electrolysis revealed that Pt65Sn35/MWCNTs+OxOx was much more active for EG oxidation than Pt65Sn35/MWCNTs: the charge increased by 65%. The chromatographic results proved that Pt65Sn35/MWCNTs+OxOx collected all of the 10 electrons per molecule of the fuel and was able to catalyze EG oxidation to CO2 due to the associative oxidation between the metallic nanoparticles and the enzymatic pathway. Overall, Pt65Sn35/ MWCNTs+OxOx proved to be a promising system to enhance the development of enzymatic biofuel cells for further application in the bioelectrochemistry field. (AU)

Processo FAPESP: 17/20431-7 - Desenvolvimento de uma cascata enzimática híbrida para a produção de biocélula etanol/O2 eficiente
Beneficiário:Jefferson Honorio Franco
Modalidade de apoio: Bolsas no Brasil - Pós-Doutorado
Processo FAPESP: 21/01134-7 - Valorização eletroquímica da molécula de glicerol: desenvolvimento de uma célula eletrolítica microbiana (MEC) para produção de bio-hidrogênio (Bio-H2) e produtos de alto valor agregado em uma célula do tipo PEM
Beneficiário:Adalgisa Rodrigues de Andrade
Modalidade de apoio: Auxílio à Pesquisa - Programa BIOEN - Regular