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October 8, 2025Scientific Reports10 citationsOpen Access

Comparative efficacy of biologically and chemically synthesized nickel oxide nanoparticles for catalytic degradation of dyes and wastewater treatment

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KSKhadija SiddiqueGovernment College University, FaisalabadFAFarrukh AzeemChinese Academy of Tropical Agricultural SciencesKAKotb A. AttiaKing Saud University

Key Points

  • Biosynthesized nickel oxide nanoparticles demonstrated 90% decolorization of methylene blue in just 1 minute, significantly faster than chemically synthesized counterparts.
  • The photocatalytic activity of nickel oxide nanoparticles was highlighted, achieving 65% degradation of 4-nitrophenol efficiently under visible light.
  • Wastewater treatment using biogenic nickel oxide nanoparticles led to 84.8% removal of reactive dye, emphasizing their potential for environmental applications.
  • These findings indicate that biogenic nickel oxide nanoparticles serve as effective alternatives for degrading organic pollutants compared to traditional chemical methods.

Abstract

Nickel oxide (NiO) nanoparticles (NPs) were synthesized using chemical and biological methods to evaluate their photocatalytic efficiency in degrading organic pollutants. The NiO-NPs were characterized by X-ray diffraction, X-ray photoelectron spectroscopy, scanning electron microscopy, Fourier-transform infrared spectroscopy, and zeta potential analysis. Their photocatalytic activity was tested using methylene blue (MB) and 4-nitrophenol (4-NP) as model pollutants under visible light irradiation. Biosynthesized NiO-NPs exhibited higher photocatalytic activity and faster degradation rates. The biosynthesized NiO-NPs decolorized MB dye by 90% in 1 min, while chemically synthesized NPs required 5 min. Additionally, biosynthesized NiO-NPs degraded 4-NP more efficiently, achieving 65% decolorization in 25 min. The photocatalytic potential of the NiO-NPs was further demonstrated by the degradation of azo dyes, including reactive red-120, reactive black-5, brilliant yellow, and brilliant blue-R. In dye-loaded textile wastewater, NiO-NPs-B and NiO-NPs-C decolorized 84.8 ± 4.7% and 67.2 ± 3.4% of added RB5, and 70.3 ± 5.0% and 56.5 ± 2.3% of added RR120, respectively. Additionally, NiO-NPs-B removed 62.4 ± 3.7% of COD from wastewater spiked with RB5, while NiO-NPs-C removed 57.1 ± 3.3%. These findings suggest that biogenic NiO-NPs are highly efficient photocatalysts for organic pollutant degradation, offering a promising alternative to conventional chemical methods.

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Cite This Study

Siddique et al. (2025) studied this question.

synapsesocial.com/papers/68e6679587ecc93a24d17462https://doi.org/10.1038/s41598-025-92845-5
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