Abstract
Cu-containing photocathodes are generally limited by fast photocorrosion under working conditions. Hence stabilization of these materials is a key factor in their potential application for the light-induced hydrogen evolution reaction (HER). In order to identify new materials, oxidized Cu-Si-Ti metallic thin film precursor materials libraries were evaluated using a combinatorial approach. High-throughput photoelectrochemical characterization using an automated optical scanning droplet cell was performed on a material library to analyze doping and alloying effects on the light-induced HER. The results revealed that compositions near Ti-doped CuSiO3 (dioptase and copper-polysilicate) and Si-doped Cu3TiOx act as comparatively stable and highly active materials for HER.
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CITATION STYLE
Stein, H. S., Gutkowski, R., Siegel, A., Schuhmann, W., & Ludwig, A. (2016). New materials for the light-induced hydrogen evolution reaction from the Cu-Si-Ti-O system. Journal of Materials Chemistry A, 4(8), 3148–3152. https://doi.org/10.1039/c5ta10186g
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