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dc.creatorXiao J., Lai J., Li R., Fang X., Zhang D., Tsiakaras P., Wang Y.en
dc.date.accessioned2023-01-31T11:37:39Z
dc.date.available2023-01-31T11:37:39Z
dc.date.issued2020
dc.identifier10.1021/acs.iecr.0c01613
dc.identifier.issn08885885
dc.identifier.urihttp://hdl.handle.net/11615/80847
dc.description.abstractA copper magnetite nanohybrid catalyst (Cu-Fe3O4/Cu/C), abundant of Schottky interfaces and structural defects, with ultrathin encapsulation of graphitic carbon, was synthesized and tested. The catalyst shows enhanced catalytic activity, far higher than the single and mixed counterparts toward ultrasonic-assisted heterogeneous Fenton degradation of rhodamine-B, exhibiting a reaction rate constant of 0.146 min-1 much larger than that over carbon-encapsulated Cu (Cu/C, 0.010 min-1) and over Fe3O4 (Fe3O4/C, 0.009 min-1). Besides, the catalyst also delivers good reusability, showing less than 7% decrease of removal efficiency even after four cycles. As evidenced by the electron paramagnetic resonance spectra and high-resolution transmission electron microscopy, the Schottky interface between Cu and Fe3O4 endows the catalyst with a good electron donor feature and significantly boosts the formation of ·OH and ·O2- radicals, and the conductive encapsulation layer and the abundant structural defects accelerate charge-transfer process in Fe3O4, which together contribute to the impressive increase of the degradation rate. © 2020 American Chemical Society.en
dc.language.isoenen
dc.sourceIndustrial and Engineering Chemistry Researchen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85087704736&doi=10.1021%2facs.iecr.0c01613&partnerID=40&md5=b67eb91686d96beb0c493d1a50f88734
dc.subjectCarbonen
dc.subjectCatalyst activityen
dc.subjectCharge transferen
dc.subjectCopperen
dc.subjectDefectsen
dc.subjectDegradationen
dc.subjectIron oxidesen
dc.subjectMagnetiteen
dc.subjectNanocatalystsen
dc.subjectNanostructured materialsen
dc.subjectOrganic pollutantsen
dc.subjectOxidationen
dc.subjectParamagnetic resonanceen
dc.subjectPhotodegradationen
dc.subjectRate constantsen
dc.subjectReusabilityen
dc.subjectRhodamine Ben
dc.subjectCarbon-encapsulateden
dc.subjectCharge transfer processen
dc.subjectElectron paramagnetic resonance spectrumen
dc.subjectEncapsulation layeren
dc.subjectEnhanced catalytic activityen
dc.subjectHeterogeneous fentonen
dc.subjectRemoval efficienciesen
dc.subjectStructural defecten
dc.subjectHigh resolution transmission electron microscopyen
dc.subjectAmerican Chemical Societyen
dc.titleEnhanced Ultrasonic-Assisted Heterogeneous Fenton Degradation of Organic Pollutants over a New Copper Magnetite (Cu-Fe3O4/Cu/C) Nanohybrid Catalysten
dc.typejournalArticleen


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