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New Insights into Cd2+/Fe3+ Co-Doped BiOBr for Enhancing the Photocatalysis Efficiency of Dye Decomposition under Visible-Light.

Hong ShengWei WangRong DaiJing NingLei ZhangQiao WuFuchun ZhangJunfeng YanWeibin Zhang
Published in: Nanomaterials (Basel, Switzerland) (2021)
Uniform flowerlike microspheres Cd2+/Fe3+ co-doped BiOBr were prepared with the aid of the microwave hydrothermal process. The results indicate that the degradation performance of Bi1-xCdxOBr and Bi1-xFexOBr are 1.31 and 2.05 times that of BiOBr for RhB, respectively. Moreover, the novel Cd2+/Fe3+ co-doped BiOBr photocatalysts with ~0.42 eV impurity bands presented remarkably enhanced photocatalytic activities with being 3.10 times that of pure BiOBr, by achieving e-/h+ efficient separation and narrowed bandgap with the ions synergistic effect of Cd2+ and Fe3+. Based on DFT insights, the photodegradation mechanism was systematically studied that the conversion of multivalent Fe3+ ions promoted the production of •O2-, and Cd2+ ions worked as electron transfer mediators, which elucidated that the •O2- and h+VB mainly participated in the catalytic reaction. The experimental and theoretical results show that the synergistic effects of multi-ion doping have great potential in the field of photocatalysis.
Keyphrases
  • visible light
  • quantum dots
  • nk cells
  • aqueous solution
  • cancer therapy
  • drug delivery
  • mass spectrometry
  • gold nanoparticles
  • molecular docking
  • molecular dynamics simulations
  • liquid chromatography
  • anaerobic digestion