MMIJ 2021,Sapporo

Presentation information (2021/08/18 Ver.)

Poster presentation session with a short speeches

(Poster session & Short presentation) Environment & Recycling Group

Wed. Sep 15, 2021 1:00 PM - 2:28 PM Room-6 (Webex)

司会:Kazunori NAKASHIMA (Hokkaido University), Koki KASHIWAYA (Kyoto University)

1:16 PM - 1:24 PM

[2K0607-17-03] [Student presentation:Doctoral course] Roles of Fe (Ⅲ) as impurities in montmorillonite/ TiO2 photocatalyst composite

○Li Zhang1, Chitiphon Chuaicham1, Keiko Sasaki1 (1. The University of Kyushu)

司会:Koki KASHIWAYA (Kyoto University)

Keywords:titanium dioxide, ferric, montmorillonite, photocatalyst, phenol

Fe(Ⅲ)-doped montmorillonite/ TiO2 composites (Fe-Mt/ TiO2) and montmorillonite/ Fe(Ⅲ)-doped TiO2 (Mt/ Fe-TiO2) with the same stoichiometry but the different locations of Fe(Ⅲ) ions were synthesized and compared for photocatalytic activity. The Fe-Mt/ TiO2 showed greater photocatalytic activity in the degradation of phenol than the Mt/ Fe-TiO2. Heterojunction between the Fe(Ⅲ)-doped Mt and TiO2 was formed since new electron-trap states were expected to generate in Mt by doping Fe(Ⅲ). The electron at the Fermi level on Fe(III)-doped Mt can be combined with the hole on the valance band of TiO2 (anatase and rutile) leads to efficient separation of electron and hole and reduce and/or avoid the recombination of the electron-hole pairs to improve the photocatalytic property activity of the composite. The better optical property of Fe-Mt/ TiO2 than Mt/ Fe-TiO2 was characterized by photoluminescence, diffuse reflectance spectroscopy, photocurrent, and impedance measurements. The higher photocatalytic degradation efficiency of phenol by Fe-Mt/ TiO2 was consistent with the characterization results.

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