Cyclic voltammetry, photocatalytic and antimicrobial comparative studies of fabrication Fe3O4 and Fe3O4/PAN nanofibers
This study reports the properties of green mediated synthesized iron oxides nanoparticles (Fe _3 O _4 NPs) from peel extracts of pomegranate plant and its polyacrylonitrile/iron oxide composite nanofibers (Fe _3 O _4 /PAN). The following were used to characterize the synthesized nanoparticles and it...
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IOP Publishing
2020-01-01
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Series: | Materials Research Express |
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Online Access: | https://doi.org/10.1088/2053-1591/ab8ba1 |
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author | Ranku N Mogomotsi Stephen S Akinola Elemike E Emeka Omolola E Fayemi |
author_facet | Ranku N Mogomotsi Stephen S Akinola Elemike E Emeka Omolola E Fayemi |
author_sort | Ranku N Mogomotsi |
collection | DOAJ |
description | This study reports the properties of green mediated synthesized iron oxides nanoparticles (Fe _3 O _4 NPs) from peel extracts of pomegranate plant and its polyacrylonitrile/iron oxide composite nanofibers (Fe _3 O _4 /PAN). The following were used to characterize the synthesized nanoparticles and its polymer nanofibers; FT-IR, UV-Visible spectroscopy, scanning electron microscope SEM, TEM and cyclic voltammetry. The antimicrobial activities of synthesized nanoparticles were investigated against selected bacterial pathogens. For the plant extract, FTIR revealed OH characteristics peaks at 3271 cm ^−1 and 1600 cm ^−1 while the absorption peaks at 577 and 430 cm ^1 showed successful reduction of the precursor to Fe _3 O _4 nanoparticles. The SEM images showed a spherical morphology of Fe _3 O _4 and that of the composite with entrapped Fe _3 O _4 into the PAN nanofibers. Photocatalytic process showed that the synthesized Fe _3 O _4 nanoparticles has degradation efficiency of 71.36% and the nanofibers exhibited efficiency of 22.68% towards methylene blue (MB) dye. However, further kinetic analysis of the degradation process put Fe _3 O _4 /PAN nanofibers (NF) at a better correlation coefficient of 0.9239 than the Fe _3 O _4 nanoparticles. Electrochemical studies using cyclic voltammetry showed that PAN functionalized with Fe _3 O _4 is more electroactive as compared to the other electrodes studied. The anodic peak potential at 599 mV also confirmed the presence of Fe _3 O _4 in the nanocomposite Fe _3 O _4 /PAN. The antimicrobial studies revealed that as the concentration of the green mediated Fe _3 O _4 nanoparticle increases in the composite Fe _3 O _4 /PAN an excellent antimicrobial activity against selected pathogens were observed, showing Fe _3 O _4 nanoparticles potentials to control pathogens of public health significance. |
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spelling | doaj.art-fa166419eb644935ba454ddda05392cb2023-08-09T16:12:48ZengIOP PublishingMaterials Research Express2053-15912020-01-017505500110.1088/2053-1591/ab8ba1Cyclic voltammetry, photocatalytic and antimicrobial comparative studies of fabrication Fe3O4 and Fe3O4/PAN nanofibersRanku N Mogomotsi0Stephen S Akinola1Elemike E Emeka2Omolola E Fayemi3https://orcid.org/0000-0002-0049-5184Department of Chemistry, Faculty of Natural and Agricultural Sciences, North-West University (Mafikeng Campus) , Private Bag X2046, Mmabatho 2735, South Africa; Material Science Innovation and Modelling (MaSIM) Research Focus Area, Faculty of Natural and Agricultural Sciences, North-West University (Mafikeng Campus) , Private Bag X2046, Mmabatho 2735, South AfricaDepartment of Chemistry, Faculty of Natural and Agricultural Sciences, North-West University (Mafikeng Campus) , Private Bag X2046, Mmabatho 2735, South Africa; Department of Microbiolgy, Faculty of Natural and Agricultural Sciences, North-West University (Mafikeng Campus) , Private Bag X2046, Mmabatho 2735, South AfricaDepartment of Chemistry, Faculty of Natural and Agricultural Sciences, North-West University (Mafikeng Campus) , Private Bag X2046, Mmabatho 2735, South Africa; Material Science Innovation and Modelling (MaSIM) Research Focus Area, Faculty of Natural and Agricultural Sciences, North-West University (Mafikeng Campus) , Private Bag X2046, Mmabatho 2735, South AfricaDepartment of Chemistry, Faculty of Natural and Agricultural Sciences, North-West University (Mafikeng Campus) , Private Bag X2046, Mmabatho 2735, South Africa; Material Science Innovation and Modelling (MaSIM) Research Focus Area, Faculty of Natural and Agricultural Sciences, North-West University (Mafikeng Campus) , Private Bag X2046, Mmabatho 2735, South AfricaThis study reports the properties of green mediated synthesized iron oxides nanoparticles (Fe _3 O _4 NPs) from peel extracts of pomegranate plant and its polyacrylonitrile/iron oxide composite nanofibers (Fe _3 O _4 /PAN). The following were used to characterize the synthesized nanoparticles and its polymer nanofibers; FT-IR, UV-Visible spectroscopy, scanning electron microscope SEM, TEM and cyclic voltammetry. The antimicrobial activities of synthesized nanoparticles were investigated against selected bacterial pathogens. For the plant extract, FTIR revealed OH characteristics peaks at 3271 cm ^−1 and 1600 cm ^−1 while the absorption peaks at 577 and 430 cm ^1 showed successful reduction of the precursor to Fe _3 O _4 nanoparticles. The SEM images showed a spherical morphology of Fe _3 O _4 and that of the composite with entrapped Fe _3 O _4 into the PAN nanofibers. Photocatalytic process showed that the synthesized Fe _3 O _4 nanoparticles has degradation efficiency of 71.36% and the nanofibers exhibited efficiency of 22.68% towards methylene blue (MB) dye. However, further kinetic analysis of the degradation process put Fe _3 O _4 /PAN nanofibers (NF) at a better correlation coefficient of 0.9239 than the Fe _3 O _4 nanoparticles. Electrochemical studies using cyclic voltammetry showed that PAN functionalized with Fe _3 O _4 is more electroactive as compared to the other electrodes studied. The anodic peak potential at 599 mV also confirmed the presence of Fe _3 O _4 in the nanocomposite Fe _3 O _4 /PAN. The antimicrobial studies revealed that as the concentration of the green mediated Fe _3 O _4 nanoparticle increases in the composite Fe _3 O _4 /PAN an excellent antimicrobial activity against selected pathogens were observed, showing Fe _3 O _4 nanoparticles potentials to control pathogens of public health significance.https://doi.org/10.1088/2053-1591/ab8ba1cyclic voltammetryphotocatalysisantimicrobialspectroscopyFe3O4PAN |
spellingShingle | Ranku N Mogomotsi Stephen S Akinola Elemike E Emeka Omolola E Fayemi Cyclic voltammetry, photocatalytic and antimicrobial comparative studies of fabrication Fe3O4 and Fe3O4/PAN nanofibers Materials Research Express cyclic voltammetry photocatalysis antimicrobial spectroscopy Fe3O4 PAN |
title | Cyclic voltammetry, photocatalytic and antimicrobial comparative studies of fabrication Fe3O4 and Fe3O4/PAN nanofibers |
title_full | Cyclic voltammetry, photocatalytic and antimicrobial comparative studies of fabrication Fe3O4 and Fe3O4/PAN nanofibers |
title_fullStr | Cyclic voltammetry, photocatalytic and antimicrobial comparative studies of fabrication Fe3O4 and Fe3O4/PAN nanofibers |
title_full_unstemmed | Cyclic voltammetry, photocatalytic and antimicrobial comparative studies of fabrication Fe3O4 and Fe3O4/PAN nanofibers |
title_short | Cyclic voltammetry, photocatalytic and antimicrobial comparative studies of fabrication Fe3O4 and Fe3O4/PAN nanofibers |
title_sort | cyclic voltammetry photocatalytic and antimicrobial comparative studies of fabrication fe3o4 and fe3o4 pan nanofibers |
topic | cyclic voltammetry photocatalysis antimicrobial spectroscopy Fe3O4 PAN |
url | https://doi.org/10.1088/2053-1591/ab8ba1 |
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