Au Nanoparticles Loaded Bi5Ti3FeO15 Ferroelectric Nanosheets with Enhanced Photocatalytic Activity for NO Removal

Yangyang Guo, Yucheng Ou, Fei Rao, Weibin Zhang, Jing Sun, Yanni Yang, Xu Yang, Cheng Wang, Junjie Wang

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Bi5Ti3FeO15 ferroelectric nanosheets are synthesized by molten salt method and further decorated Au nanoparticles on the surface of nanosheets by chemical reduced method. The phase structure, morphology, and optical properties of the samples are characterized by X-ray powder diffraction (XRD), scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS) and UV–vis spectroscopy, respectively. The introducing Au nanoparticles in Bi5Ti3FeO15 photocatalyst significantly improved light absorption and inhibit recombination of photo-generated electron/hole pairs due to the typical LSPR effect and the interface effect. The Au/Bi5Ti3FeO15 composite photocatalyst exhibited superior photocatalyst activities for NO removal and excellent stability photocatalyst performance compared with the Bi5Ti3FeO15. The results of Density functional theory (DFT) confirm that the formation of ohmic contact between Bi5Ti3FeO15 and Au, which improve the ability of electron transfer and oxygen activation. Thus, the efficiency of separation of photo-induced e /h + pairs and the generation of ⋅O2 and ⋅OH species are promoted. The scavenger experiments measurements reveal that e play the most critical role, h + and ·OH serve as a secondary active species in the photocatalytic activity for NO removal. Furthermore, the NO removal reaction process on the surface of the Au/Bi5Ti3FeO15 photocatalyst is studied by in-situ FTIR spectroscopy. This research provides a feasible idea to construct photocatalyst with high efficiency activity via decorating noble metal on ferroelectric materials. Graphical Abstract: [Figure not available: see fulltext.]

Original languageEnglish
Pages (from-to)1861-1870
Number of pages10
JournalCatalysis Letters
Volume153
Issue number7
DOIs
StatePublished - Jul 2023
Externally publishedYes

Keywords

  • Au/BiTiFeO
  • Molten salt method
  • NO removal
  • Photocatalytic

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