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Synthesis and characterization of a copper oxide/bismuth molybdate heterostructure for ciprofloxacin degradation via photoelectrocatalysis

dc.contributor.authorPastrana, Elizabeth C.
dc.contributor.authorValdivia-Alvarez, Daniel
dc.contributor.authorAranda-Aguirre, Alejandro
dc.contributor.authorWang, Dunwei
dc.contributor.authorFerreira de Brito, Juliana [UNESP]
dc.contributor.authorBoldrin Zanoni, Maria Valnice [UNESP]
dc.contributor.authorAlarcón, Hugo
dc.date.accessioned2026-04-13T14:51:11Z
dc.date.issued2025-10-15
dc.description.abstractA simple electrochemical method and dip-coating method were both used to synthesize novel heterostructures based on copper oxide/bismuth molybdate (CuO/Bi2MoO6) thin films on fluorine-doped tin oxide (FTO) substrate. The semiconductor electrode was thoroughly characterized by XRD, photoluminescence, XPS, SEM, EDS, voltammetry and chronoamperometry. Diffuse reflectance UV–Vis was measured as well as determined the optical bandgap energies. The p- and n-type semiconductor characteristics of CuO and Bi2MoO6, respectively, were elucidated via Mott–Schottky analysis. This analysis also facilitated the determination of their flat-band potentials, enabling the construction of the energy band alignment consistent with an efficient direct Z-scheme heterostructure. A highest ciprofloxacin removal efficiency of 83.7% was achieved via photoelectrocatalytic treatment using Het, wherein singlet oxygen was identified as the predominant oxidizing species, playing a primary role in the initiation and acceleration of the ciprofloxacin molecular degradation. The ciprofloxacin degradation involves three pathways through cleavage of carbon–fluorine bonds, oxidation of the piperazine ring and the decarbonylation reactions as indicated by chromatographic analysis of the degradation products. This electrode provides valuable insights into the advancement of environmentally sustainable technologies for water treatment and pharmaceutical remediation.
dc.description.affiliationCenter for the Development of Advanced Materials and Nanotechnology, Universidad Nacional de Ingeniería, Av. Túpac Amaru 210, Lima, Peru
dc.description.affiliationDepartment of Chemistry, Merkert Chemistry Center, Boston College, 2609 Beacon Street, 02467, Chestnut Hill, MA, USA
dc.description.affiliationInstitute of Chemistry, São Paulo State University (UNESP), Prof. Francisco Degni, 55, 14800-060, Araraquara, SP, Brazil
dc.description.affiliationUnespInstitute of Chemistry, São Paulo State University (UNESP), Prof. Francisco Degni, 55, 14800-060, Araraquara, SP, Brazil
dc.identifierhttps://app.dimensions.ai/details/publication/pub.1193926560
dc.identifier.dimensionspub.1193926560
dc.identifier.doi10.1007/s43630-025-00799-4
dc.identifier.issn1474-905X
dc.identifier.issn1474-9092
dc.identifier.orcid0000-0001-7045-7848
dc.identifier.orcid0000-0002-0424-7663
dc.identifier.orcid0000-0001-5211-1261
dc.identifier.orcid0000-0002-6014-7739
dc.identifier.orcid0000-0002-9533-2133
dc.identifier.orcid0000-0002-2296-1393
dc.identifier.orcid0000-0001-5581-8799
dc.identifier.pmid41091434
dc.identifier.urihttps://hdl.handle.net/11449/321644
dc.publisherSpringer Nature
dc.relation.ispartofPhotochemical & Photobiological Sciences; n. 10; v. 24; p. 1807-1824
dc.rights.accessRightsAcesso restritopt
dc.rights.sourceRightsclosed
dc.sourceDimensions
dc.titleSynthesis and characterization of a copper oxide/bismuth molybdate heterostructure for ciprofloxacin degradation via photoelectrocatalysis
dc.typeArtigopt
dspace.entity.typePublication
relation.isOrgUnitOfPublicationbc74a1ce-4c4c-4dad-8378-83962d76c4fd
relation.isOrgUnitOfPublication.latestForDiscoverybc74a1ce-4c4c-4dad-8378-83962d76c4fd
unesp.campusUniversidade Estadual Paulista (UNESP), Instituto de Química, Araraquarapt

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