Repository Article

·2025 OPEN ACCESS

DEMİR İYONLARI KATKILI BİYO-ATIK İÇERİKLİ TiO2 NANO TANECİKLERİ: YAPISAL, MORFOLOJİK VE OPTİKSEL KARAKTERİZASYONU

Nazlı Türkten YTU , Yunus Karataş , Zekiye Çınar YTU

DergiPark (Istanbul University)

Abstract

This study highlighted a facile preparation of a low-cost and efficient iron dopant photocatalyst using rice husk (RH) for water treatment. RH was not only used as a template but also as a multi-dopant source to prepare biowaste-templated TiO2 nanoparticles with iron ions (RH-Fe-TiO2). RH, as an agricultural waste, was used to prepare RH-Fe-TiO2 nanoparticles through a sol-gel method, followed by iron doping via a wet impregnation method. XRD analysis results indicated that the RH-Fe-TiO2 specimen contained a mixed phase, primarily composed of anatase and a smaller amount of rutile TiO2. The removal of the sacrificial template and the iron doping were confirmed through SEM-EDAX and XPS analysis. FTIR analysis also proved the presence of silicon derived from RH and iron dopant ions resulting from the doping procedure. The morphology of the RH-Fe-TiO2 specimen exhibited a fibrous and lamellar structure with cracks formed due to the removal of the sacrificial template. The iron doping process resulted in a reduction of the band gap and an observed red shift in the spectrum. The BET surface area of the photocatalyst was found to be 47 m2/g. The RH-Fe-TiO2 catalyst degraded 41% of 4-nitrophenol (4-NP) in 120 min.

Keywords

Dopant X-ray photoelectron spectroscopy Doping Anatase Photocatalysis Lamellar structure Nanoparticle Catalysis Materials science Chemical engineering

Subject Areas

TiO2 Photocatalysis and Solar Cells ·Renewable Energy, Sustainability and the Environment ·Physical Sciences
Environmental remediation with nanomaterials ·Biomedical Engineering ·Physical Sciences
Nanomaterials for catalytic reactions ·Organic Chemistry ·Physical Sciences

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