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Corrosion Engineering, Science and Technology
The International Journal of Corrosion Processes and Corrosion Control
Volume 56, 2021 - Issue 7
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Research Article

Polyaniline modified attapulgite incorporated in alkyd paint for carbon steel corrosion inhibition

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Pages 618-625 | Received 26 Feb 2021, Accepted 11 May 2021, Published online: 23 May 2021

References

  • Radhakrishnan S, Siju CR, Mahant D, et al. Conducting polyaniline nano-TiO2 composites for smart corrosion resistant coatings. Electrochim Acta. 2009;54:1249–1254.
  • Liu X, Hou P, Zhao X, et al. Water-based epoxy coatings with pH-sensitive TiO2 containers for active corrosion protection of carbon steel. Corros Eng Sci Techn. 2020;55:645–654.
  • Hou B, Li X, Ma X. The cost of corrosion in China. Npj Mater Degr. 2017;1(4):1–10.
  • Zhao Y, Shi L, Ji X, et al. Corrosion resistance and antibacterial properties of polysiloxane modified layer by-layer assembled self-healing coating on magnesium alloy. J Colloid Inter Sci. 2018;526:43–50.
  • Ubaid F, Radwan AB, Naeem N, et al. Multifunctional self-healing polymeric nanocomposite coatings for corrosion inhibition of steel. Surf Coat Techn. 2019;372:121–133.
  • Ye Y, Chen H, Zou Y, et al. Corrosion protective mechanism of smart graphene-based self-healing coating on carbon steel. Corros Sci. 2020;174:108825.
  • Shchukina E, Shchukin DG. Nanocontainer-based active systems: from self-healing coatings to thermal energy storage. Langmuir. 2019;35:8603–8611.
  • Liu C, Zhao H, Hou P, et al. Efficient graphene/cyclodextrin-based nanocontainer: synthesis and host−guest inclusion for self-healing anticorrosion application. ACS Appl Mater Interfaces. 2018;10:36229–36239.
  • Leal DA, Wypych F, Marino CEB. Zinc-layered hydroxide salt intercalated with molybdate anions as a new smart nanocontainer for active corrosion protection of carbon steel. ACS Appl Mater Interfaces. 2020;12:19823–19833.
  • Qian B, Zheng Z, Michailids M, et al. Mussel-inspired self-healing coatings based on polydopamine-coated nanocontainers for corrosion protection. ACS Appl Mater Interfaces. 2019;11:10283–10291.
  • Tan Z, Wang S, Hu Z, et al. pH-Responsive self-healing anticorrosion coating based on a lignin microsphere encapsulating inhibitor. Ind Eng Chem Res. 2020;59:2657–2666.
  • Cui G, Bi Z, Wang S, et al. A comprehensive review on smart anti-corrosive coatings. Pro Org Coat. 2020;148:105821.
  • Samiee R, Ramezanzadeh B, Mahdavianb M, et al. Designing a non-hazardous nano-carrier based on graphene oxide@polyaniline-praseodymium (III) for fabrication of the active/passive anticorrosion coating. J Hazard Mater. 2020;398:123136.
  • Dong J, Pan W, Luo J, et al. Synthesis of inhibitor-loaded polyaniline microcapsules with dual anti-corrosion functions for protection of carbon steel. Electrochem Acta. 2020;364:137299.
  • Gao F, Mu J, Bi Z, et al. Recent advances of polyaniline composites in anticorrosive coatings: a review. Pro Org Coat. 2021;15:106071.
  • Tavandashti NP, Ghorbani M, Shojaei A, et al. Ph responsive Ce(III) loaded polyaniline nanofifibers for self-healing corrosion protection of AA2024-T3. Prog Org Coat. 2016;99:197–209.
  • Situ Y, Ji W, Liu C. Synergistic effect of homogeneously dispersed PANI-TiN nanocomposites towards long-term anticorrosive performance of epoxy coatings. Prog Org Coat. 2019;130:158–167.
  • Hayatgheib Y, Ramezanzadeh B, Kardar P, et al. A comparative study on fabrication of a highly effective corrosion protective system based on graphene oxide-polyaniline nanofibers/epoxy composite. Corros Sci. 2018;133:358–373.
  • Wang H, Gan M, Ma L, et al. Synthesis of polyaniline-modified mesoporous-silica containers for anticorrosion coatings via in-situ polymerization and surface-protected etching. Polym Adv Technol. 2016;99:29–937.
  • Cui J, Li X, Pei Z, et al. A long-term stable and environmental friendly self-healing coating with polyaniline/sodium alginate microcapsule structure for corrosion protection of water-delivery pipelines. Chem Eng J. 2019;358:379–388.
  • Zhang C, Chen L, He Y, et al. Designing a high-performance waterborne epoxy coating with passive/active dual self-healing properties by synergistic effect of V2O5@polyaniline-tannic acid inhibitors. Prog Org Coat. 2021;151:106036.
  • Liu X, Hou P, Zhao X, et al. The polyaniline-modified TiO2 composites in water-based epoxy coating for corrosion protection of Q235 steel. J Coat Technol Res. 2019;16:71–80.
  • Liu X, Cheng Y, Wang W, et al. Application of 1D attapulgite as reservoir with benzotriazole for corrosion protection of carbon steel. Mater Chem Phys. 2018;205:292–302.
  • Li XY, Zhang D, Liu XQ, et al. A tandem demetalization–desilication strategy to enhance the porosity of attapulgite for adsorption and catalysis. Chem Eng Sci. 2016;141:184–194.
  • AïtAghzzaf A, Rhouta B, Rocca E, et al. Grafted palygorskite as containers of heptanoate for corrosion protection of steel in NaCl medium. Corros Sci. 2017;114:88–95.
  • Zhou Q, Gao Q, Luo W, et al. One-step synthesis of amino-functionalized attapulgite clay nanoparticles adsorbent by hydrothermal carbonization of chitosan for removal of methylene blue from wastewater. Colloids Surfaces A: Physicochem Eng Aspects. 2015;470:248–257.
  • Deng Y, Wang L, Hu X, et al. Highly efficient removal of tannic acid from aqueous solution by chitosan-coated attapulgite. Chem Eng J. 2012;181-182:300–306.
  • Zhong F, He Y, Wang P, et al. Novel graphene/hollow polyaniline carrier with high loading of benzotriazole improves barrier and long-term self-healing properties of nanocomposite coatings. Pro Org Coat. 2021;151:106086.
  • Nazarov A, Bozec NL, Thierry D. Assessment of steel corrosion and deadhesion of epoxy barrier paint by scanning Kelvin probe. Pro Org Coat. 2018;114:123–134.
  • Liu X, Gu C, Ma Z, et al. pH-Responsive containers based on modified hollow TiO2 for active and passive protection of carbon steel. J Electrochem Soc. 2018;165:C145–C154.
  • Örnek C, Leygraf C, Pan J. On the Volta potential measured by SKPFM fundamental and practical aspects with relevance to corrosion science. Corros Eng Sci Techn. 2019;54(3):185–198.
  • Sreelekshmy BR, Vijayan A, Basheer R, et al. Zn wetted CeO2 based composite galvanization: an effective route to combat biofouling. ACS Appl Bio Mater. 2019;2:3774–3789.
  • Jiang D, Xia X, Hou J. A novel coating system with self-reparable slippery surface and active corrosion inhibition for reliable protection of Mg alloy. Chem Eng J. 2019;373:285–297.
  • Wang C, Li Y, Alvarado L. Study on electrochemical behavior of 20# carbon steel with disbonded coating by scanning kelvin probe and local electrochemical impedance spectroscopy. Int J Electrochem Sci. 2020;15:4988–5001.
  • Li Y, Liu Z, Fan E, et al. The effect of crack tip environment on crack growth behaviour of a low alloy steel at cathodic potentials in artifificial seawater. J Hazard Mater. 2020;398:123136.
  • Zhang H, Qi X, Deng C, et al. Study on corrosion rust layers of low alloy steel in different simulated seawater environment using Raman spectroscopy. Euip Environ Eng. 2009;6:30–34.

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