Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5006134 | Materials Science in Semiconductor Processing | 2017 | 5 Pages |
Abstract
Sr2Co2O5 is a semiconductor belonging to the brownmillerite family; it is prepared by nitrate route and the photo-electrochemical properties are assessed for the first time for the photocatalytic hydrogen production. Thermal analysis indicates the formation of the semiconductor phase at 750 °C. An optical transition at 1.10 eV, directly allowed is obtained from the diffuse reflectance spectrum, due to the internal Co3+: d-d transition in octahedral coordination. A flat band potential of 0.037 VSCE is determined in KOH solution (0.1 M) from the Mott-Schottky characteristic and the results are relevant for the water reduction. The conduction band of Sr2Co2O5 (â0.85 VSCE), deriving from Co3+: 3d orbital is more cathodic than the potential of H2O/H2 couple and hydrogen is successfully evolved under visible light. A rate evolution of 68 µmol (g catalyst)â1 minâ1 at pH â¼ 12 and a light-to-chemical energy efficiency of 0.82% are determined.
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Authors
F. Saib, B. Bellal, M. Trari,