Piezo-photocatalytic activity of Bi2VO5.5 for methylene blue dye degradation

  • Kumar, Manish
  • Vaish, Rahul
  • Elqahtani, Zainab Mufarreh
  • Kebaili, Imen
  • Al-Buriahi, M. S.
  • ... Kumar, Anuruddh
  • 외 2명
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초록

This study comprises the combined effect of piezocatalytic and photocatalytic activity to obtain improved piezo-photocatalytic dye degradation efficiency in visible light. Single-phase Bi2VO5.5 powder was prepared through solid-state synthesis at 750 degrees C in 8 h. Time-dependent photo-current responses were conducted to understand the phenomenon of charge carrier transport in visible light. Bi2VO5.5 powder sample demonstrated high photocatalytic efficiency and good reusability possessing a bandgap value of 2.13 eV. Bi2VO5.5 powder sample attained 70% and % degradation efficiency during photocatalysis and piezocatalysis respectively. The piezo-photocatalytic methylene blue dye attained similar to 82% degradation efficiency in 240 min duration of visible light illumination. The scavenger test depicted holes (h(+)) as the principal active species in the piezo-photocatalytic dye degradation. There incurred no severe loss in photocatalytic efficiency even after 4 cycles which proclaims the reusability of the Bi2VO5.5 powder sample. A study on the kinetic rate constant with varying dye concentrations was conducted. With varied dye concentration of 5, 10, 15 mg/L, the kinetic rate constant obtained was 0.00528, 0.0030, and 0.00125 min(-1), respectively. Germination index was found through a phytotoxicity test using vigna radiata seeds. Here visible light along with mechanical energy has been used to achieve higher MB dye degradation efficiency through piezo-photocatalysis.

키워드

Bi2VO5.5PhotocatalysisPiezocatalysisPiezo-photocatalysisGermination indexCATALYTIC-ACTIVITYTHIN-FILMSNANOPARTICLESPERFORMANCEBI4V2O11TIO2CONDUCTORSSEPARATIONSPECTRADESIGN
제목
Piezo-photocatalytic activity of Bi2VO5.5 for methylene blue dye degradation
저자
Kumar, ManishVaish, RahulElqahtani, Zainab MufarrehKebaili, ImenAl-Buriahi, M. S.Sung, Tae HyunHwang, WonseopKumar, Anuruddh
DOI
10.1016/j.jmrt.2022.09.130
발행일
2022-11
유형
Article
저널명
Journal of Materials Research and Technology
21
페이지
1998 ~ 2012

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