Sol-Gel Preparation and Photoelectrochemical Properties of Fe2TiO5 Thin Films |
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Authors: | Hiromitsu Kozuka Masahiro Kajimura |
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Affiliation: | (1) Department of Materials Science and Engineering, Kansai University, 3-3-35 Yamate-cho, Suita, Osaka, 564-8680, Japan |
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Abstract: | Polycrystalline Fe2TiO5 films were prepared on nesa silica glass substrates by the sol-gel method, and their photoanodic properties were measured in a three-electrode wet cell with an aqueous buffer solution of pH = 7. Gel films were crystallized into Fe2TiO5 when fired at 500°C. The photoanodic current significantly increased when the films were fired at 700°C, and then decreased with increasing firing temperature. Thicker films obtained by repeating the gel film deposition and firing showed smaller photocurrent, and the 50 nm thick film prepared via non-repetitive deposition exhibited the maximum photocurrent. Although the photoresponse was extended to wavelengths near 500 nm, the maximum quantum yield was as low as 0.12 at a wavelength of 340 nm. |
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Keywords: | photoelectrochemical photoelectrode photocatalyst thin film iron titanate |
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