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A Quantum Mechanical Approach to TiO2 Photocatalysis

dc.contributor.authorKilic, Murat
dc.contributor.authorCinar, Zekiye
dc.date.accessioned2026-06-27T13:05:57Z
dc.date.issued2009
dc.description.abstractQuantum mechanical techniques play a very important role in TiO2 photocatalysis. Recent advances in heterogeneous photocatalysis have produced a number of interesting surface phenomena, reaction products and various novel photocatalysts with improved properties than the standard TiO2 photocatalyst. Many of these phenomena have not been yet explained at the molecular level. Quantum mechanical calculations appear promising as a means of describing the mechanisms and the product distributions of the photocatalytic degradation reactions of organic pollutants in both gas and aqueous phases. Since quantum mechanical methods utilize the principles of particle physics, their use may be extended to the design of new photocatalysts. This paper presents the use of quantum mechanical techniques in TiO2 photocatalysis by using certain theoretical models. Surface active species responsible of the oxidation of organic compounds were determined to be hydroxyl radicals. The determination of the mechanisms and the product distributions of the photocatalytic degradation reactions in both gas and aqueous phases were explained by using phenols + OH reaction model. Bare and salicylic acid modified TiO2 cluster models were used to describe the design of novel photocatalysts. The relations between the degradability and molecular structure were discussed in terms of the DFT-based reactivity descriptors for monosubstituted phenol derivatives.en
dc.identifier.endpage46
dc.identifier.issn1203-8407
dc.identifier.issue1
dc.identifier.startpage37
dc.identifier.urihttps://hdl.handle.net/20.500.14981/49700
dc.identifier.volume12
dc.identifier.wos000269856600004
dc.language.isoeng
dc.publisherWALTER DE GRUYTER GMBH
dc.relation.ispartofJOURNAL OF ADVANCED OXIDATION TECHNOLOGIES
dc.subjectTiO2
dc.subjectHydroxyl Radicals
dc.subjectHeterogeneous Photocatalysis
dc.subjectDFT Calculations
dc.subjectReactivity Descriptors
dc.subjectSURFACE MODIFICATION
dc.subjectREACTIVITY INDEXES
dc.subjectMOLECULAR-ENERGIES
dc.subject4-CHLOROPHENOL
dc.subjectDEGRADATION
dc.subjectDENSITY
dc.subjectWATER
dc.subjectPHOTODEGRADATION
dc.subjectADSORPTION
dc.subjectPHENOL
dc.subjectChemistry
dc.titleA Quantum Mechanical Approach to TiO2 Photocatalysis
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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