AI Article Synopsis

  • Titanium dioxide is a promising material for breaking down organic pollutants in sewage but needs improved photocatalytic performance.
  • The study developed fluorinated ZnO-TiO composites, specifically 6% F-ZTO, which showed a significantly higher degradation rate of methyl orange (93.75%) compared to regular TiO and F-TiO.
  • 6% F-ZTO exhibited strong photocatalytic activity and good recycling capability due to its small particle size, large surface area, and reduced recombination of photoelectrons and holes.

Article Abstract

Titanium dioxide, as a promising photocatalytic material, has attracted extensive attention in the field of photocatalytic degradation of organic pollutants in sewage. However, the photocatalytic performance needs to be further improved. In this work, fluorinated ZnO-TiO composites (F-ZTO) were prepared by a simple coprecipitation method. The photocatalytic performance of the samples was studied in detail with methyl orange as the target degradation product. The results indicated that under the same conditions, the degradation rates of 6% F-ZTO, F-TiO and TiO for methyl orange reached 93.75%, 76.56% and 62.89% respectively. This showed that the method used in this work could effectively improve the photocatalytic degradation performance of titanium dioxide. 6% F-ZTO showed an excellent photocatalytic activity, which was attributed to the small grain size, the large specific surface area and the effective inhibition of photoelectron-hole recombination due to fluorination and zinc oxide coupling. In three consecutive cycles, the photocatalytic activity was almost maintained, indicating that 6% F-ZTO had a good recycling performance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9044224PMC
http://dx.doi.org/10.1039/d1ra07757kDOI Listing

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