4.7 Article

Photocatalytic degradation of Congo red dye using zinc oxide nanoparticles prepared using Carica papaya leaf extract

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MATERIALS TODAY SUSTAINABILITY
卷 22, 期 -, 页码 -

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DOI: 10.1016/j.mtsust.2023.100339

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Zinc oxide; C.papaya leaf Extract; Photocatalysis; Congo red; Dye degradation

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Zinc oxide nanoparticles (ZnO NPs) with hexagonal wurtzite structure were prepared using Carica papaya leaf extract, and they demonstrated excellent photocatalytic activity in the degradation of Congo red dye under UV irradiation.
In this research, the photocatalytic degradation of Congo red (CR) dye was investigated using hexagonal wurtzite structured zinc (Zn) oxide nanoparticles (ZnO NPs: crystallite size of similar to 21 nm and band gap energy of 2.88 eV) prepared through the reduction of a Zn salt using Carica (C.) papaya leaf extract. The Fourier transform infrared (FTIR) spectra revealed the presence of several organic moieties (supplied by the C. papaya leaf extract) on the ZnO surface. High-resolution transmission electron microscope (HRTEM) images showed non-agglomerated and multi-structured (e.g., spherical, semi-spherical, hex-agonal, and rod-like) ZnO NPs. The BET analysis indicated the mesoporous structure of ZnO NPs with a high specific surface area of 34 m(2)/g. The ZnO NPs showed 99.9% degradation of CR dye (120 mg L-1) within 80 min under ultraviolet (UV) irradiation. The ZnO NPs exhibited excellent photocatalytic per-formance (e.g., quantum yield: 3.18 x 10(-4) Phi, kinetic reaction rate: 1.43 x 10(+3) mmol g(-1) h(-1), space time yield: 3.18 x 10(-5) molecules photon(-1) mg(-1), and figure-of-merit: 5.53 x 10-9 mol L J(-1) g(-1) h(-1)) with a minimum energy consumption of 3.26 x 10(22) J mol(-1) in comparison to other photocatalytic systems. The photocatalytic reaction pathways of CR dyes are addressed, along with a discussion on its degradation products based on gas chromatography-mass spectrometry (GC-MS) analysis. The overall results of this research indicate that C. papaya-mediated ZnO NPs can be used as an effective option for the degradation of industrial dyes. (c) 2023 Elsevier Ltd. All rights reserved.

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