New age monolithic design-based visible light responsive and reusable photocatalyst material using iron oxide-modified mesoporous titania framework
In this work, we report a facile route for the synthesis of worm-like mesoporous Fe 2 O 3 -doped TiO 2 monolithic composites through a direct template sol–gel method, for the photocatalytic degradation of textile dye (acid blue 113) pollutants. The monolith surface morphology and structural properti...
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Veröffentlicht in: | Bulletin of materials science 2020-12, Vol.43 (1), p.84, Article 84 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In this work, we report a facile route for the synthesis of worm-like mesoporous
Fe
2
O
3
-doped
TiO
2
monolithic composites through a direct template sol–gel method, for the photocatalytic degradation of textile dye (acid blue 113) pollutants. The monolith surface morphology and structural properties have been characterized using p-XRD, HR-SEM–EDAX, HR-TEM–SAED, TGA, UV–Vis–DRS, PLS, FTIR, XPS and BET analyses. The stoichiometric doping of
Fe
2
O
3
unleashes visible light photocatalytic activity through a red shift in the light absorption character of
TiO
2
, thereby narrowing the energy band gap, and an eventual increase in
e
-
/
h
+
separation centres. The monolithic photocatalyst exhibits better properties in terms of surface area, pore volume and diameter. The physico-chemical parameters, such as solution pH, dopant stoichiometry, catalyst quantity, dye concentration, photo-sensitizers and light intensity have been optimized to enhance the photocatalysis efficiency. The photocatalyst exhibits complete dye mineralization within 0.5 h, and also reusable for five continuous cycles.
Graphic Abstract |
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ISSN: | 0250-4707 0973-7669 |
DOI: | 10.1007/s12034-020-2040-9 |