Enhanced Photocatalytic Activity of Bio-Mediated Ag@Cu2O NPs Towards Fampridine: Kinetic Modelling and Mechanistic Pathways

To enhance the photocatalytic activity of Cu 2 O NPs, Tabernaemontana divaricata leaf extract was used to synthesize Ag@Cu 2 O NPs. The synthesized Ag@Cu 2 O NPs were characterized using UV–Vis, XPS, XRD, and HR-TEM. The mechanism of Ag onto Cu 2 O NPs showed that the plant extract was fully saturat...

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Veröffentlicht in:The Korean journal of chemical engineering 2024, 41(12), 297, pp.3191-3211
Hauptverfasser: Attri, Pratibha, Garg, Sangeeta, Ratan, Jatinder Kumar, Giri, Ardhendu Sekhar
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Sprache:eng
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Zusammenfassung:To enhance the photocatalytic activity of Cu 2 O NPs, Tabernaemontana divaricata leaf extract was used to synthesize Ag@Cu 2 O NPs. The synthesized Ag@Cu 2 O NPs were characterized using UV–Vis, XPS, XRD, and HR-TEM. The mechanism of Ag onto Cu 2 O NPs showed that the plant extract was fully saturated with flavonoids and can implant Ag onto Cu 2 O NPs. XPS spectra showed a shift towards lower binding energy for Cu 2 p peaks from 932 to 931 eV and 952 to 951 eV, which confirmed the formation of Ag@Cu 2 O NPs. HR-TEM investigation indicated that the lattice distance was d  = 0.25 nm which corresponds to the (111) plane of Ag, hence demonstrating the fabrication of Ag@Cu 2 O NPs. The degradation efficiency of fampridine was enhanced using Ag@Cu 2 O NPs to 95% with 97% chemical oxygen demand (COD) removal and 75% total organic carbon (TOC) conversion after 210 min of reaction time compared to Cu 2 O NPs. The modified first-order kinetic (MFOK) model was well fitted for the TOC conversion of fampridine, with R 2  = 0.99 as compared to the first-order kinetic (FOK) model. Liquid chromatography–mass spectroscopy (LC–MS) spectra for the degradation of fampridine showed ten intermediate fragments. The synthesized Ag@Cu 2 O NPs also showed a high inhibition zone for the two different bacterial pathogens.
ISSN:0256-1115
1975-7220
DOI:10.1007/s11814-024-00283-2