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Эта публикация цитируется в 1 научной статье (всего в 1 статье)
CHEMISTRY AND MATERIAL SCIENCE
Copper-modified g-C$_3$N$_4$/TiO$_2$ nanostructured photocatalysts for H$_2$ evolution from glucose aqueous solution
Sofiya N. Kharina, Anna Yu. Kurenkova, Andrey A. Saraev, Evgeny Yu. Gerasimov, Ekaterina A. Kozlova Boreskov Institute of Catalysis SB RAS, Novosibirsk, Russia
Аннотация:
Two strategies for synthesis of copper-modified composite photocatalysts based on graphitic carbon nitride and titanium dioxide for hydrogen evolution reaction are presented. The first one is based on the mechanical dispersion of separately prepared g-C$_3$N$_4$ and commercial TiO$_2$ (Evonik P25), modified with copper. Another approach is co-calcination of melamine and commercial TiO$_2$ with subsequent modification by copper. The samples were characterized using X-ray diffraction (XRD), UV-vis diffuse reflectance spectroscopy (UV-vis DRS), X-ray photoelectron spectroscopy (XPS), and high-resolution transmission electron microscopy (HRTEM). The synthesized photocatalysts were tested in hydrogen evolution from glucose aqueous solution under visible light irradiation (440 nm). The largest photocatalytic activities met 235 and 259 $\mu$mol $\cdot$ g$^{-1}$ $\cdot$ h$^{-1}$, corresponding to the first and the second photocatalyst series, respectively. The most active photocatalyst from the first series 1 wt.% g-C$_3$N$_4$/1 wt.% CuO$_n$/TiO$_2$ maintained its hydrogen production rate during a 6-hour cyclic stability test.
Ключевые слова:
photocatalysis, photocatalytic H$_2$ production, biomass photoreforming, glucose photoconversion, composite photocatalysts, titanium dioxide, graphitic carbon nitride, visible light irradiation
Поступила в редакцию: 18.04.2024 Исправленный вариант: 09.05.2024 Принята в печать: 10.05.2024
Образец цитирования:
Sofiya N. Kharina, Anna Yu. Kurenkova, Andrey A. Saraev, Evgeny Yu. Gerasimov, Ekaterina A. Kozlova, “Copper-modified g-C$_3$N$_4$/TiO$_2$ nanostructured photocatalysts for H$_2$ evolution from glucose aqueous solution”, Наносистемы: физика, химия, математика, 15:3 (2024), 388–397
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/nano1282 https://www.mathnet.ru/rus/nano/v15/i3/p388
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