Photostability of TiO2-Coated Wool Fibers Exposed to Ultraviolet B, Ultraviolet A, and Visible Light Irradiation

This study is to investigate the role of the coating of TiO nanoparticles deposited on wool fibers against high-intensity ultraviolet B (UVB), ultraviolet A (UVA), and visible light irradiation. The properties of tensile and yellowness and whiteness indices of irradiated TiO -coated wool fibers are...

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Veröffentlicht in:AUTEX Research Journal 2021-03, Vol.21 (1), p.1-12
Hauptverfasser: Tang, Qi, Zhang, Hui, Han, Ye, Wang, Dou, Wu, Hailiang
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Sprache:eng
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Zusammenfassung:This study is to investigate the role of the coating of TiO nanoparticles deposited on wool fibers against high-intensity ultraviolet B (UVB), ultraviolet A (UVA), and visible light irradiation. The properties of tensile and yellowness and whiteness indices of irradiated TiO -coated wool fibers are measured. The changes of TiO -coated wool fibers in optical property, thermal stability, surface morphology, composition, molecular structure, crystallinity, and orientation degree are characterized using diffuse reflectance spectroscopy, thermogravimetric analysis, scanning electronic microscopy, energy-dispersive X-ray spectroscopy, Fourier-transform infrared spectroscopy, and X-ray diffraction techniques. Experimental results show that the tensile properties of anatase TiO -coated wool fibers can be degraded under the high-intensity UVB, UVA, and visible light irradiation for a certain time, resulting in the loss of the postyield region of stress–strain curve for wool fibers. The coating of TiO nanoparticles makes a certain contribution to the tensile property, yellowness and whiteness indices, thermal stability, and surface morphology of wool fibers against high-intensity UVB, UVA, and visible light irradiation. The high-intensity UVB, UVA, and visible light can result in the photo-oxidation deterioration of the secondary structure of TiO -coated wool fibers to a more or less degree. Meanwhile, the crystallinity and orientation degree of TiO coated wool fibers decrease too.
ISSN:1470-9589
2300-0929
DOI:10.2478/aut-2019-0055