4.7 Article

Construction of a hollow BiOI/TiO2/ZIF-8 heterojunction: Enhanced photocatalytic performance for norfloxacin degradation and mechanistic insight

Journal

JOURNAL OF ALLOYS AND COMPOUNDS
Volume 914, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2022.165326

Keywords

BiOI; Metal organic framework; P-n heterojunction; Photocatalytic degradation; Norfloxacin

Funding

  1. Natural Science Foundation of Jiangsu Province [BK20190245]
  2. QingLan Project of Jiangsu Province, Technology Support Program (Agriculture) of Taizhou [TN202122/SNY20210010]
  3. Research Foundation for Talented Scholars of Taizhou University [QD2016006]
  4. Undergraduate Training Program for Innovation and Entrepreneurship of Jiangsu Province [202112917038Y]

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This study developed a novel hollow BiOI/TiO2/ZIF-8 heterojunction and showed improved photocatalytic performance for norfloxacin removal under visible light irradiation.
The overuse of norfloxacin (NOR) has attracted wide attention because of the persistence and bio-accumulate in ecosystems and the negative impacts on human health. To solve the environmental issue, BiOI/TiO2 p-n heterojunctions have been developed and decorated with a porous ZIF-8 to obtain novel hollow BiOI/TiO2/ZIF-8 heterojunctions, which were further characterized by XRD, SEM, HRTEM, XPS, BET, UV-vis DRS, photoluminescence, ESR, photocurrent and EIS analyses. The BiOI/TiO2/ZIF-8 heterojunctions exhibited evidently improved photocatalytic performance compared with pristine BiOI, TiO2 and BiOI/TiO2 composites under visible light irradiation. ZIF-8 plays a key role in both the enhancement of adsorption and the photocatalytic activity in NOR removal. O-center dot(2)- and (OH)-O-center dot radicals were the two dominating active species in the photocatalytic process according to the trapping experiments. In 2-BTZ system, large specific surface area, highly effective charge carrier migration with inhibiting recombination, more negative CB and positive VB to generate more active O-center dot(2)- and (OH)-O-center dot species resulted in superior photocatalytic activity. This work provides a new idea to design a kind of photocatalytic heterostructure with more active species for potential application in the field of environmental treatment. (C) 2022 Elsevier B.V. All rights reserved.

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