This thesis work is focused on the synthesis of TiO2 based hetero-nanostructured mixed metal oxides for their used as photo-anodes in different photo-electrochemical applications. Compared to single-phase photocatalysts, hetero-nanostructured mixed metal oxides can increase the efficiency of charges separation and lifetime, enhance the interfacial charge transfer to adsorbed substrate as well as improve the light-response range to the visible region.

This thesis work is focused on the synthesis of TiO2 based hetero-nanostructured mixed metal oxides for their used as photo-anodes in different photo-electrochemical applications. Compared to single-phase photocatalysts, hetero-nanostructured mixed metal oxides can increase the efficiency of charges separation and lifetime, enhance the interfacial charge transfer to adsorbed substrate as well as improve the light-response range to the visible region.

PHOTOELECTROCATALYTIC PERFORMANCE OF MIXED OXIDE ELECTRODES FOR APPLICATIONS IN SOLAR CELLS

AMPUDIA CASTRESANA, PABLO
2017-03-10

Abstract

This thesis work is focused on the synthesis of TiO2 based hetero-nanostructured mixed metal oxides for their used as photo-anodes in different photo-electrochemical applications. Compared to single-phase photocatalysts, hetero-nanostructured mixed metal oxides can increase the efficiency of charges separation and lifetime, enhance the interfacial charge transfer to adsorbed substrate as well as improve the light-response range to the visible region.
10-mar-2017
This thesis work is focused on the synthesis of TiO2 based hetero-nanostructured mixed metal oxides for their used as photo-anodes in different photo-electrochemical applications. Compared to single-phase photocatalysts, hetero-nanostructured mixed metal oxides can increase the efficiency of charges separation and lifetime, enhance the interfacial charge transfer to adsorbed substrate as well as improve the light-response range to the visible region.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/249566
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