The Preparation of Photoactive TiO2/NaX Zeolite Composites under Hydrothermal Conditions with the Use of Solutions with a High Concentration of Titanium Polyhydroxo Complexes

IF 1.1 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING Protection of Metals and Physical Chemistry of Surfaces Pub Date : 2025-02-18 DOI:10.1134/S2070205124702083
M. F. Butman, N. L. Ovchinnikov, N. M. Vinogradov, N. E. Gordina
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Abstract

Composites of titanium dioxide and NaX zeolite containing 50, 70, and 80% TiO2 by weight relative to the zeolite in their composition are obtained using solutions with a high concentration of polyhydroxo complexes of titanium in a pressurized reactor. The materials are characterized by X-ray diffraction, IR spectroscopy, scanning electron microscopy, energy-dispersive microanalysis, and low-temperature adsorption–desorption of nitrogen. The adsorption and photocatalytic properties of the composites are studied by way of example of a model dye, Rhodamine B. The phase composition of the photoactive coating (the ratio of anatase and rutile); morphology of its surface; and textural, adsorption, and photocatalytic properties of the obtained composites to a significant extent depend on the degree of coverage of the surface of the zeolite. The properties of the microporous zeolite carrier after coating with titanium dioxide are transformed into the properties of a mesoporous material in the composite. The highest photocatalytic activity is found for the 80% TiO2/NaX composite (with a size of TiO2 crystallites of about 13 nm and an anatase/rutile ratio of phases of about 0.97). Complete discoloration of the dye (concentration of 10 mg/L, amount of the photocatalyst composite of 1 g/L) under UV irradiation (lamp power of 250 W) is observed over 90 min.

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来源期刊
CiteScore
1.90
自引率
18.20%
发文量
90
审稿时长
4-8 weeks
期刊介绍: Protection of Metals and Physical Chemistry of Surfaces is an international peer reviewed journal that publishes articles covering all aspects of the physical chemistry of materials and interfaces in various environments. The journal covers all related problems of modern physical chemistry and materials science, including: physicochemical processes at interfaces; adsorption phenomena; complexing from molecular and supramolecular structures at the interfaces to new substances, materials and coatings; nanoscale and nanostructured materials and coatings, composed and dispersed materials; physicochemical problems of corrosion, degradation and protection; investigation methods for surface and interface systems, processes, structures, materials and coatings. No principe restrictions exist related systems, types of processes, methods of control and study. The journal welcomes conceptual, theoretical, experimental, methodological, instrumental, environmental, and all other possible studies.
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