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Visible light active Cu 2+ doped TiO 2 for simultaneous removal of Rhodamine-B and Cr (VI)

Inorganic Chemistry Communications, ISSN: 1387-7003, Vol: 156, Page: 111147
2023
  • 4
    Citations
  • 0
    Usage
  • 16
    Captures
  • 1
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    4
  • Captures
    16
  • Mentions
    1
    • News Mentions
      1
      • News
        1

Most Recent News

Findings from Indian Institute of Technology (IIT) Hyderabad in Photocatalytics Reported [Visible Light Active Cu2+doped Tio2 for Simultaneous Removal of Rhodamine-b and Cr (Vi)]

2023 OCT 03 (NewsRx) -- By a News Reporter-Staff News Editor at Nanotech Daily -- Data detailed on Nanotechnology - Photocatalytics have been presented. According

Article Description

Cu-doped TiO 2 with different weight percentages of Cu loading (1% to 4%) were synthesized by the sol–gel technique and characterized by powder XRD, SEM and TEM. 1 and 2 wt% Cu 2+ doping, Cu -TiO 2 has a major anatase phase with a minor rutile phase, and with increasing Cu loading to 3% and 4%, rutile phase increasing were observed. UV–Vis absorption spectroscopy confirmed that with Cu doping, the band gap of TiO 2 decreased. PL and XPS was used to understand the optical properties and the surface elemental composition and the oxidation state of the elements of the prepared catalysts. Photocatalytic activity of synthesized materials was assessed for the visible light assisted removal of Rhodamine B and Cr (VI) individually and simultaneously. The mineralization of the pollutant was confirmed by the TOC analyzer. 3% Cu-doped TiO 2 shows the highest degradation and mineralization when compared to other TiO 2 materials. The radicals trapping experiments were conducted to determine the mechanism and it was found that O 2 –• and e - are the active radical species for the photocatalytic degradation of Rhodamine B and Cr (VI). The simultaneous removal of Rhodamine B and Cr (VI) was higher compared to the removal of individual pollutants.

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