Heterojunction-Based Photocatalytic Degradation of Rose Bengal Dye via Gold-Decorated α-Fe2O3-CeO2 Nanocomposites under Visible-Light Irradiation
Author:
Alshammari Najah Ayad12ORCID, Kosa Samia Abdulhammed1ORCID, Patel Rajan3ORCID, Malik Maqsood Ahmad4ORCID
Affiliation:
1. Department of Chemistry, Faculty of Sciences, King Abdulaziz University (KAU), Jeddah 21589, Saudi Arabia 2. Department of Chemistry, Faculty of Sciences, Northern Border University (NBU), Arar 91431, Saudi Arabia 3. Biophysical Chemistry Laboratory, Centre for Interdisciplinary Research in Basic Sciences, Jamia Millia Islamia, New Delhi 110025, India 4. Department of Chemistry, Faculty of Sciences, Jamia Millia Islamia, New Delhi 110025, India
Abstract
Developing photocatalytic nanomaterials with unique physical and chemical features using low-cost and eco-friendly synthetic methods is highly desirable in wastewater treatment. In this work, the magnetically separable α-Fe2O3-CeO2 nanocomposite (NC), with its respective metal oxides of α-Fe2O3 and CeO2 nanoparticles, was synthesized using a combination of hexadecyltrimethylammonium bromide (CATB) and ascorbic acid via the hydrothermal method. To tune the band gap, the heterojunction nanocomposite of α-Fe2O3-CeO2 was decorated with plasmonic Au nanoparticles (Au NPs). The various characterization methods, such as FTIR, UV-vis DRS, XRD, XPS, TEM, EDX, SEM, and PL, were used to determine the properties of the materials, including their morphology, elemental composition, optical properties, band gap energy, and crystalline phase. The nanocomposite of α-Fe2O3-CeO2@Au was utilized to remove Rose Bengal (RB) dye from wastewater using a photocatalytic technique when exposed to visible light. A comprehensive investigation of the impact of the catalyst concentration and initial dye concentration was conducted to establish the optimal photodegradation conditions. The maximum photocatalytic efficiency of α-Fe2O3-CeO2@Au (50 mg L−1) for RB (20 ppm) dye removal was found to be 88.9% in 120 min under visible-light irradiation at a neutral pH of 7 and 30 °C. Various scavengers, such as benzoquinone (BQ; 0.5 mM), tert-butyl alcohol (TBA; 0.5 mM), and ethylenediaminetetraacetic acid (EDTA; 0.5 mM), were used to investigate the effects of different free radicals on the photocatalytic process. Furthermore, the reusability of the α-Fe2O3-CeO2@Au photocatalyst has also been explored. Furthermore, the investigation of the potential mechanism demonstrated that the heterojunction formed between α-Fe2O3 and CeO2, in combination with the presence of deposited Au NPs, led to an enhanced photocatalytic efficiency by effectively separating the photogenerated electron (e−)–hole (h+) pairs.
Funder
Deanship of Scientific Research (DSR), Northern Bor-der University, Arar, KSA
Reference130 articles.
1. Prasher, I.B., Ahmad, N., Ahmed, M., Raghuwanshi, S., Kumar, V., Siddiqui, S.I., and Oh, S. (2023). Live Biomass of Rigidoporus vinctus: A Sustainable Method for Decoloration and Detoxification of Dyes in Water. Microorganisms, 11. 2. Siddiqui, S.I., Allehyani, E.S., Al-Harbi, S.A., Hasan, Z., Abomuti, M.A., Rajor, H.K., and Oh, S. (2023). Investigation of Congo Red Toxicity towards Different Living Organisms: A Review. Processes, 11. 3. A critical review on the treatment of dye-containing wastewater: Ecotoxicological and health concerns of textile dyes and possible remediation approaches for environmental safety;Ali;Ecotoxicol. Environ. Saf.,2022 4. Nigella sativa seeds based antibacterial composites: A sustainable technology for water cleansing-A review;Rathi;Sustain. Chem. Pharm.,2020 5. Fatima, B., Alwan, B.A., Siddiqui, S.I., Ahmad, R., Almesfer, M., Khanna, M.K., and Oh, S. (2021). Facile synthesis of cu-zn binary oxide coupled cadmium tungstate (Cu-znbo-cp-ct) with enhanced performance of dye adsorption. Water, 13.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|