Electronic structure engineering of BaTiO3 cuboctahedrons by doping copper to enhance the photocatalytic activity for environmental remediation

dc.contributor.authorUma, P.I.
dc.contributor.authorShenoy, U.S.
dc.contributor.authorBhat, D.K.
dc.date.accessioned2026-02-04T12:26:24Z
dc.date.issued2023
dc.description.abstractThe advent of perovskites as an efficient photocatalyst has paved the way to newer possibilities in the degradation of contaminants such as dyes and toxic heavy metal ions. The alleged poor photocatalyst BaTiO<inf>3</inf> was engineered to perform better by decreasing its bandgap to make it visible light active via doping. The high-risk factor in the reduction of the bandgap is the formation of recombination centers for the charge carriers which decreases the efficiency of the photocatalyst. Herein, we studied the electronic structure tuning of BaTiO<inf>3</inf> by doping copper and developed a one pot synthesis method to obtain copper doped BaTiO<inf>3</inf> that has a high surface area, lower recombination rate, and higher photocatalytic efficiency towards dye degradation and hexavalent chromium ion reduction. The 0.5 CuBT sample had a photocatalytic efficiency of 99.4 % for methyl violet decomposition within 120 min and 99.8 % for hexavalent chromium ion reduction by fructose in 20 min. © 2023 Elsevier B.V.
dc.identifier.citationJournal of Alloys and Compounds, 2023, 948, , pp. -
dc.identifier.issn9258388
dc.identifier.urihttps://doi.org/10.1016/j.jallcom.2023.169600
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/21824
dc.publisherElsevier Ltd
dc.subjectChromium
dc.subjectCopper
dc.subjectEfficiency
dc.subjectElectronic structure
dc.subjectHeavy metals
dc.subjectMetal ions
dc.subjectPerovskite
dc.subjectPhotocatalytic activity
dc.subjectRare earths
dc.subjectBand gap reduction
dc.subjectDoping copper
dc.subjectDye degradation
dc.subjectElectronic.structure
dc.subjectIon removal
dc.subjectPerovskite oxides
dc.subjectToxic ion removal
dc.subjectToxic ions
dc.subjectVisible-light photocatalysts
dc.subjectEnergy gap
dc.titleElectronic structure engineering of BaTiO3 cuboctahedrons by doping copper to enhance the photocatalytic activity for environmental remediation

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