4.8 Article

Nanocontainer-Enhanced Self-Healing for Corrosion-Resistant Ni Coating on Mg Alloy

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 9, Issue 41, Pages 36247-36260

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.7b12036

Keywords

magnesium alloy; metallic coatings; mesoporous silica; nanocontainers; corrosion

Funding

  1. National Natural Science Foundation of China (NSFC) [51501157]
  2. NSF [CHE 1566283, UP 1640669]
  3. China Scholarship Council (CSC) [201508510046]
  4. Education Department of Sichuan Province [15TD0018]
  5. CWNU [CXTD2015-1]
  6. Chemical Synthesis and Pollution Control Key Laboratory of Sichuan Province [CSPC2014-4-2]

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The ability to manipulate the functionalization of Ni coating is of great importance in improving the corrosion resistance of magnesium (Mg) alloy for many industrial applications. In the present work, MCM-41 type mesoporous silica nanocontainers (MSNs) loaded with corrosion inhibitor (NaF) were synthesized and employed as smart reinforcements to enhance the integrity and corrosion inhibition of the Ni coating. The incorporation of the F-loaded MSNs (P@MSNs) to enhance the corrosion resistant capacity of a metallic coating is reported for the first time. The mesoporous structures of the as-prepared MSNs and F@MSNs were confirmed by transmission electron microscopy (TEM), small angle. X-rays, scattering (SAXS), and N-2 adsotption-desorption. isotherms. The X-ray photoelectron spectroscopy (XPS) data demonstrated the successful immobilization of fluoride ion on the MSNs and formation of a magnesium fluoride (MgF2) protective film at the corrosion sites of the Mg alloy upon soaking in a F@MSNs-containing NaCl solution. The results from potentiodynamic polarization (PDP) and electrochemical impedance spectroscopy (EIS) for both bare Mg alloy and Ni coatings with and without F@MSNs have revealed a clear decrease in corrosion rate in a corrosive solution for a long-time immersion due to the introduction of F@MSNs. These findings open new opportunities in the exploration of self-healing metallic coatings for highly enhanced anticorrosion protection of Mg alloy.

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