4.7 Article

Panax notoginseng powder -assisted preparation of carbon-quantum-dots/BiOCl with enriched oxygen vacancies and boosted photocatalytic performance

期刊

ENVIRONMENTAL RESEARCH
卷 215, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2022.114366

关键词

BiOCl; Carbon quantum dots; Separation of photoinduced carriers; Oxygen vacancies; Photocatalytic property; Panax notoginseng

资金

  1. Chemical Synthesis and Pollution Control Key Laboratory of Sichuan Province
  2. Sichuan University of Science and Engineering
  3. Graduate stu- dent Innovation Fund of Sichuan University of Science and Engineering
  4. [CSPC202105]
  5. [2021RC26]
  6. [Y2022029]

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In this study, BiOCl composite photocatalysts containing carbon quantum dots (CQDs) were prepared and it was found that regulating the amount of oxygen vacancies on BiOCl can enhance the photogenerated charge separation efficiency and photocatalytic activity.
Low activity of photocatalysts is a serious bottleneck to the practical application of photocatalytic technology. In this paper, a series of BiOCl composite photocatalysts containing carbon quantum dots (CQDs) were successfully prepared by adding Panax notoginseng powder (PNP) to the solvothermal synthesis system of BiOCl as a tem-plate agent and a raw material for 0D CQDs. CQDs/BiOCl exhibit 2D flake structures and 3D flower-like mi-crospheres self-assembled from thin flakes, holding rich oxygen vacancies (OVs). After detailed characterization, it was found that the amount of OVs on BiOCl could be regulated according to the amount of PNP added. The CQDs/OVs-BiOCl photocatalysts exhibit higher photogenerated charge separation efficiency and photocatalytic activity than the bare BiOCl. When the mass ratio of PNP/BiOCl is 1.0%, the photocatalyst demonstrates the maximum degradation activity for rhodamine B (RhB) and perfluorooctanoic acid (PFOA). In view of the solid observations, a photocatalytic enhancement mechanism of CQDs/BiOCl was elucidated.

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