4.7 Article

Novel highly-active Ag/Bi dual nanoparticles-decorated BiOBr photocatalyst for efficient degradation of ibuprofen

期刊

ENVIRONMENTAL RESEARCH
卷 206, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2021.112628

关键词

BiOBr microspheres; One-step reduction method; Ag; Bi dual nanoparticles; Ibuprofen degradation

资金

  1. China Postdoctoral Science Foundation [2021M693793, 2019T120251, 2018M630334]
  2. Natural Science Foundation of Heilongjiang Province [YQ2019E009]
  3. Heilongjiang Province Hundred-Thousand-Ten Thousand Engineering and Technology Major Project [2019ZX05A01]
  4. Heilongjiang Post-doctoral Young Talent Program [LBH-TZ05]
  5. Heilongjiang Postdoctoral Scientific Research Developmental Fund [LBH-Q17034]
  6. University Nursing Program for Young Scholars with Creative Talents in Hei-longjiang Province [UNPYSCT-2020143]
  7. Heilongjiang Postdoctoral General Fund [LBH-Z20123]

向作者/读者索取更多资源

The novel composite photocatalyst Ag/Bi-BiOBr, decorated with Ag and Bi dual nanoparticles, showed high light absorption, narrow band gap, and fast charge separation. By optimizing the loading amounts of Ag and Bi dual NPs, it achieved excellent photocatalytic activity with 92.3% removal of IBP within 60 minutes, among the best reported results for IBP degradation.
The surface plasmon resonance (SPR) effect of noble nanometals can be utilized to effectively improve the catalytic performance of semiconductor photocatalysts. In this work, a novel composite photocatalyst of BiOBr microspheres simultaneously decorated by Ag and Bi dual nanoparticles (NPs) has been successfully synthesized by the hydrothermal method plus one-step reduction method. And the morphology, structure, chemical composition and photoelectrical properties of this composite photocatalyst (Ag/Bi-BiOBr) were further char-acterized. Due to the SPR effect of Ag and Bi dual NPs, Ag/Bi-BiOBr showed the high light absorption with narrow band gap, as well as fast charge separation via metal-semiconductor heterojunction so as to realize an efficient degradation of ibuprofen (IBP) under simulated solar irradiation. Through the further optimization of the loading amounts of Ag and Bi dual NPs, the excellent photocatalytic activity in the Ag/Bi-BiOBr has been achieved that 92.3% of IBP was removed within 60 min, which is among the best results reported so far for IBP degradation via photocatalysis.

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