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Effect of Ag Co-catalyst on TiO2-Cu2O nanocomposites structure and apparent visible photocatalytic activity.
Nagy, Dávidné; Chao, Cong; Marzec, Bartosz; Nudelman, Fabio; Ferrari, Maria-Chiara; Fan, Xianfeng.
Afiliación
  • Nagy D; School of Engineering, The University of Edinburgh, The King's Buildings, Robert Stevenson Road, Edinburgh, EH9 3FB, United Kingdom.
  • Chao C; School of Engineering, The University of Edinburgh, The King's Buildings, Robert Stevenson Road, Edinburgh, EH9 3FB, United Kingdom.
  • Marzec B; School of Chemistry, The University of Edinburgh, Joseph Black Building, EH9 3FJ, United Kingdom.
  • Nudelman F; School of Chemistry, The University of Edinburgh, Joseph Black Building, EH9 3FJ, United Kingdom.
  • Ferrari MC; School of Engineering, The University of Edinburgh, The King's Buildings, Robert Stevenson Road, Edinburgh, EH9 3FB, United Kingdom.
  • Fan X; School of Engineering, The University of Edinburgh, The King's Buildings, Robert Stevenson Road, Edinburgh, EH9 3FB, United Kingdom. Electronic address: x.fan@ed.ac.uk.
J Environ Manage ; 260: 110175, 2020 Apr 15.
Article en En | MEDLINE | ID: mdl-32090853
ABSTRACT
Although Cu2O is a commonly used narrow band gap semiconductor to fabricate visible response photocatalysts, up to date there are only a few reports on Ag co-catalysed TiO2-Cu2O nanocomposites. Herein we report a facile wet chemical synthesis approach to prepare TiO2-Ag-Cu2O ternary hybrid nanomaterials. Uniquely, both the effect of Ag content and the synthesis sequence of Ag deposition step was investigated on the visible decoloration rate. The crystal structure, morphology, optical and dark adsorption properties of the nanostructures were characterized by XRD, SEM, TEM and diffuse reflectance, respectively. Due to the mixed indirect and direct nature of the nanocomposites, the band gap estimation was performed by using both Tauc plot and differential reflectance model. The dark adsorption properties of catalysts could be typically well-approximated by pseudo-second order kinetics, while TiO2-Ag(5%)-Cu2O catalyst cannot be described by standard models due to a delayed adsorption behaviour observed in the first 50 min. The apparent visible activities followed pseudo-zero order kinetics. It was found that TiO2-Ag(3%)-Cu2O catalyst exhibited the highest rate constant which was ca. two times as high as that of the binary TiO2-Cu2O catalyst. The synthesis sequence of the Ag deposition step significantly altered the material properties which resulted in different dark adsorption and apparent visible activities.
Asunto(s)

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Plata / Nanocompuestos Idioma: En Año: 2020 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Plata / Nanocompuestos Idioma: En Año: 2020 Tipo del documento: Article