Transparent TiO 2 nanotubes supporting silver sulfide for photoelectrochemical water splitting

Differences between photoelectrochemical and electrochemical activity were thoroughly investigated for the oxygen evolution reaction mediated by Ag S deposited on two types of ordered titania substrates. Titanium dioxide nanotubes were fabricated by anodization of magnetron sputtered Ti films on ITO...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Nanoscale 2024-08, Vol.16 (32), p.15265-15279
Hauptverfasser: Lipińska, Wiktoria, Wolff, Stefania, Dehm, Katharina E, Hager, Simon P, Gumieniak, Justyna, Kramek, Agnieszka, Crisp, Ryan W, Coy, Emerson, Grochowska, Katarzyna, Siuzdak, Katarzyna
Format: Artikel
Sprache:eng
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Differences between photoelectrochemical and electrochemical activity were thoroughly investigated for the oxygen evolution reaction mediated by Ag S deposited on two types of ordered titania substrates. Titanium dioxide nanotubes were fabricated by anodization of magnetron sputtered Ti films on ITO-coated glass substrates or directly from Ti foil. Further, Ag S deposition on the nanotubes was carried out using successive ionic layer adsorption and reaction, known as SILAR, with 5, 25, and 45 cycles performed. Two types of nanotubes, one on transparent the other on non-transparent substrates were compared regarding their geometry, structure, optical, and electrochemical properties. It was demonstrated that the composite of Ag S grown on transparent nanotubes exhibits higher catalytic activity compared to Ag S grown on the nanotubes formed on Ti foil. The results showed that transparent nanotubes after modification with Ag S by 25 SILAR cycles exhibit 3 times higher photocurrent under visible light illumination than non-transparent ones treated with the same number of cycles. Furthermore, transparent nanotubes after 45 SILAR cycles of Ag S exhibit enhanced activity towards oxygen evolution reaction with 9.3 mA cm at 1.1 V Ag/AgCl/0.1 M KCl which is six times higher than titania alone on Ti foil.
ISSN:2040-3364
2040-3372
DOI:10.1039/D4NR01440E