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Carbon Nanotubes Incorporated Z-Scheme Assembly of AgBr/TiO for Photocatalytic Hydrogen Production Under Visible Light Irradiations

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Date 2019 Dec 15
PMID 31835847
Citations 1
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Abstract

Photocatalytic H production is a promising strategy toward green energy and alternative to carbon-based fuels which are the root cause of global warming and pollution. In this study, carbon nanotubes (CNTs) incorporated Z-scheme assembly of AgBr/TiO was developed for photocatalytic H production under visible light irradiations. Synthesized photocatalysts were characterized through transmission electron microscope (TEM), X-ray photoelectron spectra (XPS), X-ray diffractometer (XRD), Fourier transform infrared (FTIR), photoluminescence spectra (PL), Brunauer Emmet-Teller(BET), and UV-vis spectroscopy analysis techniques. The composite photocatalysts exhibited a H production of 477 ppm which was three-folds higher than that produced by TiO. The good performance was attributed to the strong interaction of three components and the reduced charge recombination, which was 89 and 56.3 times lower than the TiO and AgBr/TiO. Furthermore, the role of surface acidic and basic groups was assessed and the photocatalytic results demonstrated the importance of surface functional groups. In addition, the composites exhibited stability and reusability for five consecutive cycles of reaction. Thus, improved performance of the photocatalyst was credited to the CNTs as an electron mediator, surface functional groups, higher surface area, enhanced charge separation and extended visible light absorption edge. This work provides new development of Z-scheme photocatalysts for sustainable H production.

Citing Articles

Ag as Cocatalyst and Electron-Hole Medium in CeO QDs/Ag/AgSe Z-scheme Heterojunction Enhanced the Photo-Electrocatalytic Properties of the Photoelectrode.

Li L, Feng H, Wei X, Jiang K, Xue S, Chu P Nanomaterials (Basel). 2020; 10(2).

PMID: 32023932 PMC: 7075152. DOI: 10.3390/nano10020253.

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