Crystallization of Nano-TiO2 Films based on Glass Fiber Fabric Substrate and Its Impact on Catalytic Performance
Nano-TiO film attracts great attention by its excellent photocatalytic activity performance. The application of nano-TiO film based on fabric substrate in indoor household textiles is helpful for purifying air and degrading formaldehyde content in indoor environments. In this paper, the nano-TiO fil...
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Veröffentlicht in: | Open Physics 2019-01, Vol.17 (1), p.345-351 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Nano-TiO
film attracts great attention by its excellent photocatalytic activity performance. The application of nano-TiO
film based on fabric substrate in indoor household textiles is helpful for purifying air and degrading formaldehyde content in indoor environments. In this paper, the nano-TiO
films were prepared on fiberglass substrate by the sol-gel method, and the appearance of fabrics coated with nano-TiO
at conditions of both without calcination (room temperature) and high temperature calcination (300
C, 350
C, 400
C) was studied. In addition, X-ray diffraction technology was applied to analyze the crystallization of TiO
film, with further discussion of the photocatalytic performance of degrading helianthin under UV irradiation.The results show that with increase of calcination temperature, the color of the fabric gets darker and darker until the powder peeling and dyeing reaches the maximum degree, the fabric becomes fragile, the anatase crystal form of TiO
film tends to be complete, and the photocatalytic performance is improved. It is feasible to apply TiO
film on the surface of fabrics in the design of indoor household textiles. |
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ISSN: | 2391-5471 |
DOI: | 10.1515/phys-2019-0038 |