4.7 Article

Preparation and enhanced visible-light photocatalytic activity of graphitic carbon nitride/bismuth niobate heterojunctions

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 261, Issue -, Pages 235-245

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2013.07.025

Keywords

Graphitic carbon nitride; Bismuth niobate; Heterojunction; Visible-light photocatalysis; Organic pollutant

Funding

  1. Natural Science Fund Council of China [21173036, 51278092]
  2. Science and Technology Project of Jilin Province [20086035]
  3. Northeast Normal University postdoctoral Fund
  4. Fundamental Research Funds for the Central Universities [12SSXT148]

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A series of graphitic carbon nitride/bismuth niobate (g-C3N4/Bi5Nb3O15) heterojunctions with g-C3N4 doping level of 10-90 wt% were prepared by a facile milling-heat treatment method. The phase and chemical structures, surface compositions, electronic and optical properties as well as morphologies of the prepared g-C3N4/Bi5Nb3O15 were well-characterized. Subsequently, the photocatalytic activity and stability of g-C3N4/Bi5Nb3O15 were evaluated by the degradation of aqueous methyl orange (MO) and 4-chlorophenol (4-CP) under the visible-light irradiation. At suitable g-C3N4 doping levels, g-C3N4/Bi5Nb3O15 exhibited enhanced visible-light photocatalytic activity compared with pure g-C3N4 or Bi5Nb3O15. This excellent photocatalytic activity was-revealed in terms of the extension of visible-light response and efficient separation and transportation of the photogenerated electrons and holes due to coupling of g-C3N4 and Bi5Nb3O15. Additionally, the active species yielded in the pure g-C3N4- and g-C3N4/Bi5Nb3O15-catalyzed 4-CP photodegradation systems were investigated by the free radical and hole scavenging experiments. (C) 2013 Elsevier By. All rights reserved.

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