• English
    • العربية
  • العربية
  • Login
  • QU
  • QU Library
  •  Home
  • Communities & Collections
  • Help
    • Item Submission
    • Publisher policies
    • User guides
    • FAQs
  • About QSpace
    • Vision & Mission
View Item 
  •   Qatar University Digital Hub
  • Qatar University Institutional Repository
  • Academic
  • University Publications
  • QU Forum Proceedings
  • Qatar University Annual Research Forum & Exhibition
  • QUARFE 2020
  • Theme 1: Energy, Environment & Resource Sustainability
  • View Item
  • Qatar University Digital Hub
  • Qatar University Institutional Repository
  • Academic
  • University Publications
  • QU Forum Proceedings
  • Qatar University Annual Research Forum & Exhibition
  • QUARFE 2020
  • Theme 1: Energy, Environment & Resource Sustainability
  • View Item
  •      
  •  
    JavaScript is disabled for your browser. Some features of this site may not work without it.

    Multifunctional self-healing polymeric nanocomposite coatings for corrosion inhibition of steel

    Thumbnail
    View/Open
    Multifunctional self-healing polymeric nanocomposite coatings for corrosion inhibition of steel.pdf (2.385Mb)
    Date
    2020
    Author
    Bahgat, Ahmed
    Shakoor, R. A.
    Abdullah, Aboubakr M
    Metadata
    Show full item record
    Abstract
    The present work focuses on the self-healing and corrosion behavior of novel epoxy based coatings containing epoxy monomer (EM) and dodecylamine (DDA) as self-healing and corrosion inhibitor, respectively. The coating self-healing ability and the corrosion inhibition effect have been combined, together, in one single coated layer providing autonomous corrosion protection. Towards this goal, the as-synthesized titania nanotubes (TNTs), with an average size of 20 nm were impregnated with DDA and EM and were thoroughly dispersed into the epoxy used as the matrix and applied on steel. Fourier-transform infrared spectroscopy (FTIR) analysis confirms the presence of DDA loaded nanotubes and the loading of inhibitor was estimated by thermogravimetric analysis. . Additionally, the amount of the released corrosion inhibitor was identified by gas chromatography-mass spectrometry (GC-MS). The scanning electron microscopy (SEM), analysis shows the polymer healing of the prepared coatings when damaged. The electrochemical studies indicate that the corrosion rate of the steel samples coated with the epoxy modified with the healing additives decreases after 5 days of immersion in saline water.
    URI
    https://doi.org/10.29117/quarfe.2020.0001
    DOI/handle
    http://hdl.handle.net/10576/16536
    Collections
    • Theme 1: Energy, Environment & Resource Sustainability [‎108‎ items ]

    entitlement


    Qatar University Digital Hub is a digital collection operated and maintained by the Qatar University Library and supported by the ITS department

    Contact Us | Send Feedback
    Contact Us | Send Feedback | QU

     

     

    Home

    Submit your QU affiliated work

    Browse

    All of Digital Hub
      Communities & Collections Publication Date Author Title Subject Type Language Publisher
    This Collection
      Publication Date Author Title Subject Type Language Publisher

    My Account

    Login

    Statistics

    View Usage Statistics

    About QSpace

    Vision & Mission

    Help

    Item Submission Publisher policiesUser guides FAQs

    Qatar University Digital Hub is a digital collection operated and maintained by the Qatar University Library and supported by the ITS department

    Contact Us | Send Feedback
    Contact Us | Send Feedback | QU

     

     

    Video