A series of hybrid heterostructured nanocomposites of ZnO with VO nanotubes (VOx-NTs) in different mixing ratios were synthesized, with the aim of reducing the recombination of photoinduced charge carriers and to optimize the absorption of visible light. The study was focused on the use of heterostructured semiconductors that can extend light absorption to the visible range and enhance the photocatalytic performance of ZnO in the degradation of methylene blue as a model pollutant. The addition of VOx-NTs in the synthesis mixture led to a remarkable performance in the degradation of the model dye, with hybrid ZnO (stearic acid)/VOx-NTs at a ratio of 1:0.06 possessing the highest photocatalytic activity, about seven times faster than pristine zinc oxide. Diffuse reflectance spectroscopic measurements and experiments in the presence of different trapping elements allowed us to draw conclusions regarding the band positions and photocatalytic degradation mechanism. The photocatalytic activity measured in three subsequent cycles showed good reusability as no significant loss in efficiency of dye degradation was observed.
English
ZnO nanocomposites; VOx nanotubes; Visible light photocatalyst; Methylene blue degradation
Ministerio de Economía y Competitividad SEV-2013-0295
Ministerio de Economía y Competitividad FIS2015-70862-P
Catalysts ; Vol. 8, Issue 2 (February 2018), art. 93
open access
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