Magnetite nanoparticles/polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steel

The corrosion inhibitive effects of new polyvinylpyrrolidone stabilized crystalline super-paramagnetic nanoparticles (5–20 nm) were investigated. Several characterization techniques confirmed the high stability of the prepared stabilized nanoparticles in solution. The polarization and EIS measuremen...

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Main Authors: Eman A. Khamis, Amal Hamdy, Rania E. Morsi
Format: Article
Language:English
Published: Egyptian Petroleum Research Institute 2018-12-01
Series:Egyptian Journal of Petroleum
Online Access:http://www.sciencedirect.com/science/article/pii/S1110062117304415
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author Eman A. Khamis
Amal Hamdy
Rania E. Morsi
author_facet Eman A. Khamis
Amal Hamdy
Rania E. Morsi
author_sort Eman A. Khamis
collection DOAJ
description The corrosion inhibitive effects of new polyvinylpyrrolidone stabilized crystalline super-paramagnetic nanoparticles (5–20 nm) were investigated. Several characterization techniques confirmed the high stability of the prepared stabilized nanoparticles in solution. The polarization and EIS measurements showed that the inhibition efficiency increased with increasing concentration of the magnetite nanoparticles. The results obtained from EIS and electrochemical polarization curves are in reasonably good agreement. The obtained results suggest that the prepared stabilized system is an excellent inhibitor for carbon steel corrosion in 1 M HCl solution. Keywords: Carbon steel, Magnetite nanoparticles, Stabilization, Potentiodynamic polarization, Impedance spectroscopy
format Article
id doaj-art-bb061534ac3a4a6281c111ffa9a5460b
institution Kabale University
issn 1110-0621
language English
publishDate 2018-12-01
publisher Egyptian Petroleum Research Institute
record_format Article
series Egyptian Journal of Petroleum
spelling doaj-art-bb061534ac3a4a6281c111ffa9a5460b2025-08-20T03:24:44ZengEgyptian Petroleum Research InstituteEgyptian Journal of Petroleum1110-06212018-12-0127491992610.1016/j.ejpe.2018.02.001Magnetite nanoparticles/polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steelEman A. Khamis0Amal Hamdy1Rania E. Morsi2Egyptian Petroleum Research Institute, Cairo 11727, EgyptEgyptian Petroleum Research Institute, Cairo 11727, EgyptCorresponding author.; Egyptian Petroleum Research Institute, Cairo 11727, EgyptThe corrosion inhibitive effects of new polyvinylpyrrolidone stabilized crystalline super-paramagnetic nanoparticles (5–20 nm) were investigated. Several characterization techniques confirmed the high stability of the prepared stabilized nanoparticles in solution. The polarization and EIS measurements showed that the inhibition efficiency increased with increasing concentration of the magnetite nanoparticles. The results obtained from EIS and electrochemical polarization curves are in reasonably good agreement. The obtained results suggest that the prepared stabilized system is an excellent inhibitor for carbon steel corrosion in 1 M HCl solution. Keywords: Carbon steel, Magnetite nanoparticles, Stabilization, Potentiodynamic polarization, Impedance spectroscopyhttp://www.sciencedirect.com/science/article/pii/S1110062117304415
spellingShingle Eman A. Khamis
Amal Hamdy
Rania E. Morsi
Magnetite nanoparticles/polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steel
Egyptian Journal of Petroleum
title Magnetite nanoparticles/polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steel
title_full Magnetite nanoparticles/polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steel
title_fullStr Magnetite nanoparticles/polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steel
title_full_unstemmed Magnetite nanoparticles/polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steel
title_short Magnetite nanoparticles/polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steel
title_sort magnetite nanoparticles polyvinyl pyrrolidone stabilized system for corrosion inhibition of carbon steel
url http://www.sciencedirect.com/science/article/pii/S1110062117304415
work_keys_str_mv AT emanakhamis magnetitenanoparticlespolyvinylpyrrolidonestabilizedsystemforcorrosioninhibitionofcarbonsteel
AT amalhamdy magnetitenanoparticlespolyvinylpyrrolidonestabilizedsystemforcorrosioninhibitionofcarbonsteel
AT raniaemorsi magnetitenanoparticlespolyvinylpyrrolidonestabilizedsystemforcorrosioninhibitionofcarbonsteel