Use este identificador para citar ou linkar para este item: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1187599
Título: Sn-Decorated Cu/Cu2O Electrodes Enable Selective CO2 Reduction to Formic Acid under Realistic Flue Gas Streams.
Autoria: LEITE, A.
DIAS, E. H.
AWOTOYE, D.
ARANSIOLA, E.
AMMAR, M.
PEREIRA, E. C.
RIBEIRO, C.
BALTRUSAITIS, J.
Afiliação: UNIVERSITY OF SÃO PAULO
FEDERAL UNIVERSITY OF SÃO CARLOS
LEHIGH UNIVERSITY, BETHLEHEM, PENNSYLVANIA 18015, UNITED STATES
LEHIGH UNIVERSITY, BETHLEHEM, PENNSYLVANIA 18015, UNITED STATES
LEHIGH UNIVERSITY, BETHLEHEM, PENNSYLVANIA 18015, UNITED STATES
FEDERAL UNIVERSITY OF SÃO CARLOS
CAUE RIBEIRO DE OLIVEIRA, CNPDIA
LEHIGH UNIVERSITY, BETHLEHEM, PENNSYLVANIA 18015, UNITED STATES.
Ano de publicação: 2026
Referência: ACS Applied Energy Materials, v. 9, 2026.
Páginas: 1912−1929
Conteúdo: Theelectrochemical reductionofCO2 is typically investigatedunderpureCO2 feeds,butpracticaldeploymentmust addressmorecomplexanddilutesourcessuchasfluegases.Here, we studied Cu/Cu2O electrodes decorated with tin (Sn) synthesizedusing a scalable electrodepositionmethodandpost treatments under both pureCO2 and reactive nitrogen oxide containingsimulatedfluegas, towardformicacidsynthesis.Raman spectroscopyandAtomicForceMicroscopyanalysesrevealedthat flue gas exposure induces heterogeneous restructuring of the electrodewith surface roughening, surface carbonate formation, andlocalizedredepositionprocesses.Optimalcatalystperformance underpureCO2wasachievedwithintermediateSncoverageof3 minelectrodeposition, deliveringFaradaic efficiencies of 80%andproduction rates of 370μmol cm−2 h−1. Sn-modifiedCu2O electrodes alsoexhibitedhigh selectivity toward formic acidunder acidic gas containing simulatedflue gas, reachingFaradaic efficienciesof90%albeitatproductionratesof113μmolcm−2h−1,despitea10-foldreducedCO2partialpressure.Theseresults demonstratethat interfacialSn−CustructuresenabledselectiveCO2RRevenunderchallengingfeedconditions,pointingoutboth theopportunitiesandlimitationsof translatinglaboratory-scalecatalysts torealisticgasstreams.
Palavras-chave: Plasma derived flue gas
Oxide derived copper
CO2 electroreduction
Digital Object Identifier: https://doi.org/10.1021/acsaem.5c03902
Tipo do material: Artigo de periódico
Acesso: openAccess
Aparece nas coleções:Artigo em periódico indexado (CNPDIA)

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