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  4. NO Degradation on the Anatase TiO2 (001) Surface in the Presence of Water
 
Zitierlink DOI
10.26092/elib/4022
Verlagslink DOI
10.1021/acs.jpcc.2c04731

NO Degradation on the Anatase TiO2 (001) Surface in the Presence of Water

Veröffentlichungsdatum
2022-10-10
Autoren
Gupta, Verena Kristin  
Balzaretti, Filippo  
Guo, Pu  
Köppen, Susan  
Frauenheim, Thomas  
Dominguez Garcia, Adriel  
Zusammenfassung
Nitric oxide (NO) is known to degrade to nitric acid (HNO3) on anatase TiO2 facets under visible light irradiation in the presence of water. However, the exact role that water plays in this photoreaction is not fully understood. By employing the density functional theory (DFT) and time-dependent density functional tight binding (TD-DFTB), we show the viability of two suggested degradation pathways involving water. Both reaction pathways are triggered by a charge transfer excitation from the NO molecule to the TiO2 surface. In one of them, NO interacts with dissociated water molecules adsorbed on the surface to form HONO+, whereas for the second pathway, NO is oxidized to NO2+ by capturing one oxygen atom from the substrate. Both HONO and NO2 are known byproducts in the photodegradation of NO, which further react with adsorbed water to finally produce HNO3. We also demonstrate by means of nudged elastic band calculations that these reactions are unlikely to happen without illumination.
Schlagwörter
Adsorption

; 

Chemical reactions

; 

Degradation

; 

Electromagnetic radiation

; 

Oxides
Verlag
American Chemical Society
Institution
Universität Bremen  
Fachbereich
Fachbereich 04: Produktionstechnik, Maschinenbau & Verfahrenstechnik (FB 04)  
Zentrale Wissenschaftliche Einrichtungen und Kooperationen  
Institute
Hybrid Materials Interfaces (HMI) Group  
MAPEX Center for Materials and Processes  
Dokumenttyp
Wissenschaftlicher Artikel
Zeitschrift/Sammelwerk
The Journal of Physical Chemistry C  
ISSN
1932-7455
Band
126
Heft
41
Startseite
17544
Endseite
17553
Zweitveröffentlichung
Ja
Dokumentversion
Postprint
Lizenz
Alle Rechte vorbehalten
Sprache
Englisch
Dateien
Lade...
Vorschaubild
Name

Gupta et al_NO Degradation on the Anatase TiO2 (001) Surface in the Presence of Water_2022_accepted-version.pdf

Size

1.55 MB

Format

Adobe PDF

Checksum

(MD5):db61414cec03d03a94af18c1d79952ef

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