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http://hdl.handle.net/11189/9353| Title: | Degradation of methylene blue dye and bisphenol‑a using expanded graphenec‑polypyrrole‑magnetite nanocomposite | Authors: | Ama, Onoyivwe Monday Aigbe, Uyiosa Osagie Anku, William Wilson Osibote, Otolorin Adelaja Pal, Kaushik |
Keywords: | Photoelectrochemical degradation;photoanode;contaminants;energy bandgap;nanocomposite | Issue Date: | 2022 | Publisher: | Springer Nature | Source: | Ama, O.M., Ama, Aigbe, U.O., Anku, W.W. et al. Degradation of methylene blue dye and bisphenol‑a using expanded graphenec‑polypyrrole‑magnetite nanocomposite. Topics in Catalysis, 65: 1745-1754. [https://doi.org/10.1007/s11244-022-01626-1] | Journal: | Topics in Catalysis | Abstract: | This work is focused on the synthesis of expanded graphene (EG), polypyrrole-magnetite (PPy/Fe₃O₄) and expanded gra- phene-polypyrrole-magnetite nanocomposite (EG-PPy/Fe₃O₄) electrodes and their application in the degradation of organic pollutants in water. The nanocomposites were synthesized through the co-precipitation method and characterized using ultra- violet–visible spectroscopy, Brunauer–Emmett–Teller surface area analyser, scanning electron microscope, energy dispersive X-ray, X-ray diffractometer and X-ray photoelectron spectroscope. The EG, PPy/Fe₃O₄ and EG-PPy/Fe₃O₄ electrodes were applied in a comparative photoelectrochemical degradation of 0.1 × 10−⁴ M methylene blue (MB) dye and bisphenol A (BPA) in 0.1 M Na₂SO₄ under visible light irradiation. The degradation was also performed through photolysis, electrochemical and photoelectrochemical processes. The results showed that the pure PPy and EG-PPy/Fe₃O₄ were present in the Anatase phase of PPy. The EG-PPy/Fe₃O₄ composite absorbed a noticeable amount of light in the entire visible light region compared to pure PPy and PPy/Fe₃O₄. The surface area and pore volume of pure PPy was observed to decrease after modification with the EG as a result of the interpenetration of the porous matrix of EG by the PPy nanoparticles. The EG-PPy/Fe₃O₄ electrode was the most effective in the degradation of both dyes. The order of efficiency was EG < PPy/Fe₃O₄ < EG-PPy/Fe₃O₄. The photoelectrochemical degradation process resulted in improved degradation efficiency of 92% (MB) and 88% (BPA) within 240 min and was observed to be greater than that of photolysis and electrochemical oxidation methods. The EG-PPy/Fe₃O₄ aterial for the degradation of MB and BPA in wastewater. | URI: | http://hdl.handle.net/11189/9353 | ISSN: | 1022-5528 1572-9028 |
DOI: | https://doi.org/10.1007/s11244-022-01626-1 |
| Appears in Collections: | Appsc - Journal Articles (DHET subsidised) |
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| File | Description | Size | Format | |
|---|---|---|---|---|
| Degradation_Methylene_Blue_Dye_Bisphenol‑A.pdf | 1.53 MB | Adobe PDF | View/Open |
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