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2,4-Dichlorophenol (2,4-DCP) as a persistent organic pollutant, poses significant health risks to humans through chronic exposure. Photocatalysis is an efficient and green treatment technology, which has great advantages in the degradation of organic pollutants in wastewater. In this study, the PPy-BiVO-Cu photocatalyst - modified with both transition metal copper ions (Cu) doping and conductive polypyrrole (PPy) composite - was synthesized via a two-step process combining sol-gel method and chemical oxidative polymerization method. The results show that the pristine BiVO is monoclinic scheelite phase. After Cu modification, new crystalline phases of BiCuVO and CuO were formed. And it is found that the modification of Cu and the combination of PPy can effectively improve the charge separation and migration efficiency of the photocatalyst, and achieving full-spectrum light absorption across 230-800 nm. The degradation experimental results showed that the 3 %PPy-BiCu-4 composite material achieved 91.51 % degradation efficiency of 2,4-DCP in 1.5 h under visible light irradiation. Mechanistic studies demonstrated that the dual p-n heterojunctions formed among BiVO, CuO, and BiCuVO, combined with the Z-scheme heterojunction between PPy and BiVO. Driven by the built-in electric field, these heterostructures facilitated efficient separation and directional migration of electron-hole pairs. Ultimately, electrons (e) in the conduction band of PPy and holes (h) in the valence band of CuO generated reactive species (•O and •OH), achieving highly efficient degradation of 2,4-DCP. This study elucidates the interfacial charge transfer pathways within the PPy-BiVO-Cu composite photocatalyst, which provides a new idea for the photocatalytic degradation of 2,4-DCP wastewater.
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http://dx.doi.org/10.1016/j.envres.2025.122219 | DOI Listing |
J Fluoresc
September 2025
Chemical Engineering Department, College of Engineering, University of Ha'il, P.O. Box 2440, 81441, Ha'il, Saudi Arabia.
This review delivers a focused and critical evaluation of recent progress in the green synthesis of carbon quantum dots (CQDs), with particular attention to state-of-the-art approaches utilizing renewable biomass as precursors. The main objective is to systematically examine innovative, environmentally friendly methods and clarify their direct influence on the core properties and photocatalytic performance of CQDs. The novelty of this review stems from its comprehensive comparison of green synthetic pathways, revealing how specific processes determine key structural, optical, and electronic attributes of the resulting CQDs.
View Article and Find Full Text PDFRSC Adv
September 2025
School of Engineering and Technology, National Textile University 37640 Faisalabad Pakistan
[This retracts the article DOI: 10.1039/D4RA01544D.].
View Article and Find Full Text PDFJ Colloid Interface Sci
September 2025
Ministry-of-Education Key Laboratory for the Green Preparation and Application of Functional Materials, Hubei Key Laboratory of Polymer Materials, School of Materials Science & Engineering, Hubei University, Wuhan 430062, PR China. Electronic address:
Effective removal of ethylene (CH) during fruit and vegetables storage and transport remains a critical challenge for post-harvest preservation. Although S-scheme heterojunctions can improve charge separation and redox capacity for ethylene degradation, their efficiency is still restricted by limited carrier transfer and sluggish oxygen activation. Here, we rationally designed a novel 2D/2D SnNbO/BiMoO monolayer S-scheme heterojunction integrated with Pt co-catalyst to address these limitations.
View Article and Find Full Text PDFInorg Chem
September 2025
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun 130012, China.
Photocatalysis has emerged as a promising strategy to address water pollution caused by heavy metals and antibiotics. Zeolites exhibit significant potential in petrochemical catalysis; however, the development of zeolite-based photocatalysts remains a critical challenge for researchers. Herein, a novel Z-scheme heterojunction was designed and fabricated on the titanium-silicon zeolite TS-1 by modifying g-CN via a simple calcination process.
View Article and Find Full Text PDFInt J Phytoremediation
September 2025
Innovative Food Technologies Development Application and Research Center, Gölköy Campus Bolu, Bioenvironment and Green Synthesis Research Group, Bolu Abant İzzet Baysal University, Bolu, Türkiye.
This study presents an eco-friendly approach for the green synthesis of manganese oxide nanoparticles (MnONPs) using () (einkorn wheat) seed extract as a reducing and stabilizing agent. The synthesized MnONPs were characterized by UV-Vis, XRD, FTIR, SEM-EDX, BET, and zeta potential analyses, which confirmed their crystalline nature, spherical morphology, and mesoporous structure with a surface area of 41.50 m/g.
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