Defect engineering over anisotropic brookite toward substrate-specific photo-oxidation of alcohols

dc.contributor.authorHejazi, S. M. Hossein
dc.contributor.authorShahrezaei, Mahdi
dc.contributor.authorBłoński, Piotr
dc.contributor.authorAllieta, Mattia
dc.contributor.authorSheverdyaeva, Polina M.
dc.contributor.authorMoras, Paolo
dc.contributor.authorBaďura, Zdeněk
dc.contributor.authorKalytchuk, Sergii
dc.contributor.authorMohammadi, Elmira
dc.contributor.authorZbořil, Radek
dc.contributor.authorKment, Štěpán
dc.contributor.authorOtyepka, Michal
dc.contributor.authorNaldoni, Alberto
dc.contributor.authorFornasiero, Paolo
dc.date.accessioned2023-02-22T10:26:59Z
dc.date.available2023-02-22T10:26:59Z
dc.date.issued2022
dc.description.abstractGenerally adopted strategies for enhancing the photocatalytic activity are aimed at tuning the visible light response, the exposed crystal facets, and the nanocrystal shape. Here, we present a different approach for designing efficient photocatalysts displaying a substrate-specific reactivity upon defect engineering. The platinized, defective anisotropic brookite TiO2 photocatalysts are tested for alcohol photoreforming showing up to an 11-fold increase in methanol oxidation rate, compared with the pristine one, while presenting much lower ethanol or isopropanol specific oxidation rates. We demonstrate that the substrate- specific alcohol oxidation and hydrogen evolution reactions are tightly related, and when the former is increased, the latter is boosted. The reduced anisotropic brookite shows up to 18-fold higher specific photoactivity with respect to anatase and brookite with isotropic nanocrystals. Advanced in situ characterizations and theoretical investigations reveal that controlled engineering over oxygen vacancies and lattice strain produces large electron polarons hosting the substratespecific active sites for alcohol photo-oxidation.cs
dc.description.firstpage1177cs
dc.description.issue5cs
dc.description.lastpage1190cs
dc.description.sourceWeb of Sciencecs
dc.description.volume2cs
dc.identifier.citationChem Catalysis. 2022, vol. 2, issue 5, p. 1177-1190.cs
dc.identifier.doi10.1016/j.checat.2022.03.015
dc.identifier.issn2667-1093
dc.identifier.urihttp://hdl.handle.net/10084/149139
dc.identifier.wos000901369300005
dc.language.isoencs
dc.publisherElseviercs
dc.relation.ispartofseriesChem Catalysiscs
dc.relation.urihttps://doi.org/10.1016/j.checat.2022.03.015cs
dc.rights© 2022 Elsevier Inc.cs
dc.subjectselective photocatalysiscs
dc.subjecthydrogen productioncs
dc.subjectgreen hydrogencs
dc.subjectoxygen vacanciescs
dc.subjectDFT calculationscs
dc.subjectphotoreformingcs
dc.titleDefect engineering over anisotropic brookite toward substrate-specific photo-oxidation of alcoholscs
dc.typearticlecs
dc.type.statusPeer-reviewedcs

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