4.7 Article

Polyoxometalates-doped Bi2O3-x/Bi photocatalyst for highly efficient visible-light photodegradation of tetrabromobisphenol A and removal of NO

期刊

CHINESE JOURNAL OF CATALYSIS
卷 43, 期 3, 页码 771-781

出版社

ELSEVIER
DOI: 10.1016/S1872-2067(21)63843-3

关键词

Bismuth-based photocatalyst; Polyoxometalates; Bi; Photocatalytic degradation; NO removal

资金

  1. National Natural Science Foundation of China [21771033]
  2. Fundamental Research Funds for the Central Universities [2412018BJ001]
  3. HongKong Scholar programme (2018-2019) [XJ2018021]
  4. General Research Fund, Research Grants Council of Hong Kong Government [18301117]
  5. EdUHK [04425]

向作者/读者索取更多资源

A novel polyoxometalate PW12O403--doped Bi2O3-x/Bi Schottky photocatalyst was prepared and showed enhanced photocatalytic activity through optimizing the electronic structure and accelerating photogenerated carrier separation. PBOB-18 exhibited the best photocatalytic performance and showed significant degradation of TBBPA and NO.
Bismuth-based photocatalysts are a class of excellent visible-light photocatalysts; however, their redox activity is relatively poor and the efficiency of photogenerated carrier separation is low, limiting their development and application in the field of photocatalysis. To address these issues, a series of polyoxometalate PW12O403--doped Bi2O3-x/Bi Schottky photocatalysts PW12@Bi2O3-x/Bi-n (PBOB-n, where n is the amount of NaBH4, i.e., 6, 12, 18, 24, and 48 mg) were prepared by a simple electrospinning/calcination/in-situ NaBH4 reduction method. In this composite photocatalyst, the doping of PW12 could effectively adjust the electronic structure of Bi2O3-x and improve its redox properties. As a shallow electron trap, PW12 promoted the separation of the photogenerated carriers. Furthermore, desirable Schottky junction between the metal Bi nanoparticles and PW12@Bi2O3-x further accelerated the separation of the photogenerated carriers. The synergistic effect of the aforementioned factors endowed PBOB-n with excellent photocatalytic activity. Among the samples, PBOB-18 exhibited superior photocatalytic activity. Under visible-light irradiation, 93.7% (20 mg catalyst) of 20 ppm tetrabromobisphenol A (TBBPA, 20 mL) was degraded in 60 min. Its activity was 4.4 times higher than that of Bi2O3. PBOB-18 also exhibited an ultrahigh photocatalytic performance for the removal of NO. Its removal rate (600 ppb) reached 83.3% in 30 min, making it one of the most active Bi-based photocatalysts. Furthermore, the photocatalytic mechanisms of PBOB-18 for TBBPA and NO have been proposed. This work provides a new direction and reference for the design of low-cost, efficient, stable, and versatile photocatalysts. (C) 2022, Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. All rights reserved.

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