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Effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition

Long-time environmental protection of metallic materials is still required in the manufacturing and engineering applications. Nickel-graphene nanocomposite coatings have been prepared on carbon steel using sodium dodecyl sulfate (SDS) as a dispersant in the electrolyte by an electrochemical co-depos...

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Autores principales: Yasin, Ghulam, Arif, Muhammad, Nizam, Muhammad Naeem, Shakeel, Muhammad, Khan, Muhammad Abubaker, Khan, Waheed Qamar, Hassan, Tahira Mehtab, Abbas, Zaheer, Farahbakhsh, Iman, Zuo, Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080783/
https://www.ncbi.nlm.nih.gov/pubmed/35541677
http://dx.doi.org/10.1039/c7ra13651j
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author Yasin, Ghulam
Arif, Muhammad
Nizam, Muhammad Naeem
Shakeel, Muhammad
Khan, Muhammad Abubaker
Khan, Waheed Qamar
Hassan, Tahira Mehtab
Abbas, Zaheer
Farahbakhsh, Iman
Zuo, Yu
author_facet Yasin, Ghulam
Arif, Muhammad
Nizam, Muhammad Naeem
Shakeel, Muhammad
Khan, Muhammad Abubaker
Khan, Waheed Qamar
Hassan, Tahira Mehtab
Abbas, Zaheer
Farahbakhsh, Iman
Zuo, Yu
author_sort Yasin, Ghulam
collection PubMed
description Long-time environmental protection of metallic materials is still required in the manufacturing and engineering applications. Nickel-graphene nanocomposite coatings have been prepared on carbon steel using sodium dodecyl sulfate (SDS) as a dispersant in the electrolyte by an electrochemical co-deposition technique. In this study, the effects of surfactants on graphene dispersion, carbon content in the coatings, surface morphology, microstructures, microhardness and corrosion resistance properties of the nanocomposite coatings are explored. The results indicate that the reasonably good graphene dispersion, coarser surface morphology and reduction in grain sizes are achieved upon increasing the surfactant concentration in the electrolyte. The surfactant also influences the preferred orientation of grains during electrodeposition; the (200) plane is the preferred orientation for the nanocomposite produced with SDS in the bath electrolyte. The microhardness, adhesive strength and corrosion performance of the nickel-graphene nanocomposite coatings are found to increase with the increasing concentration of sodium dodecyl sulfate in the deposition bath. Moreover, the influencing mechanism of surfactant concentration on the properties of nanocomposite coatings has been discussed.
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spelling pubmed-90807832022-05-09 Effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition Yasin, Ghulam Arif, Muhammad Nizam, Muhammad Naeem Shakeel, Muhammad Khan, Muhammad Abubaker Khan, Waheed Qamar Hassan, Tahira Mehtab Abbas, Zaheer Farahbakhsh, Iman Zuo, Yu RSC Adv Chemistry Long-time environmental protection of metallic materials is still required in the manufacturing and engineering applications. Nickel-graphene nanocomposite coatings have been prepared on carbon steel using sodium dodecyl sulfate (SDS) as a dispersant in the electrolyte by an electrochemical co-deposition technique. In this study, the effects of surfactants on graphene dispersion, carbon content in the coatings, surface morphology, microstructures, microhardness and corrosion resistance properties of the nanocomposite coatings are explored. The results indicate that the reasonably good graphene dispersion, coarser surface morphology and reduction in grain sizes are achieved upon increasing the surfactant concentration in the electrolyte. The surfactant also influences the preferred orientation of grains during electrodeposition; the (200) plane is the preferred orientation for the nanocomposite produced with SDS in the bath electrolyte. The microhardness, adhesive strength and corrosion performance of the nickel-graphene nanocomposite coatings are found to increase with the increasing concentration of sodium dodecyl sulfate in the deposition bath. Moreover, the influencing mechanism of surfactant concentration on the properties of nanocomposite coatings has been discussed. The Royal Society of Chemistry 2018-05-31 /pmc/articles/PMC9080783/ /pubmed/35541677 http://dx.doi.org/10.1039/c7ra13651j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Yasin, Ghulam
Arif, Muhammad
Nizam, Muhammad Naeem
Shakeel, Muhammad
Khan, Muhammad Abubaker
Khan, Waheed Qamar
Hassan, Tahira Mehtab
Abbas, Zaheer
Farahbakhsh, Iman
Zuo, Yu
Effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition
title Effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition
title_full Effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition
title_fullStr Effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition
title_full_unstemmed Effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition
title_short Effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition
title_sort effect of surfactant concentration in electrolyte on the fabrication and properties of nickel-graphene nanocomposite coating synthesized by electrochemical co-deposition
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080783/
https://www.ncbi.nlm.nih.gov/pubmed/35541677
http://dx.doi.org/10.1039/c7ra13651j
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