2023-Sustainable Industrial Processing Summit
Intl. Symp on Electrochemistry, Molten Salts, Corrosion and Recycling

Editors:F. Kongoli, R. Fehrmann, V. Papangelakis, I. Paspaliaris, G. Saevarsdottir, G. Kipouros, R. Singh, F. Wang, D. Macdonald, R. Gupta, M. Barinova, F. Ahmed, H. Ozgunay, K. Tang, N.N. Thanh, C. Gaidau, K. Kolomaznik
Publisher:Flogen Star OUTREACH
Publication Year:2023
Pages:114 pages
ISBN:978-1-989820-98-8 (CD)
ISSN:2291-1227 (Metals and Materials Processing in a Clean Environment Series)
CD-SIPS2023_Volume1
CD shopping page

    DESIGNING ANTI-MILDEW SMART MICROCAPSULES TO IMPROVE SELF-HEALING PERFORMANCE FOR WATER-BASED EPOXY COATINGS

    Ying Li1;
    1INSTITUTE OF METAL RESEARCH, CHINESE ACADEMY OF SCIENCE, Shenyang, China;
    Type of Paper: Regular
    Id Paper: 138
    Topic: 66

    Abstract:

    The design and fabrication of stimuli-responsive smart anti-corrosive coatings with merits of eco-friendliness, multifunctionality and long-acting is a major demand in corrosion protective field, which can be fulfilled by adding smart microcapsules (MCs) into coatings [1,2] Nevertheless, owning to the unclear release controlling mechanism of MCs, the design of high-performance MCs on-demand fails to be achieved. In addition, the existing MCs are mostly fabricated by synthetic materials with undesirable eco-friendliness. On the other hands, although the addition of MCs can significantly improve the corrosion protective performance, this single function fails to fulfill multifunctional integration needs of protective coatings [3,4]. To tackle above issues, a MC is assembled by choosing 2-mercaptobenzimidazole (2-MBI) as inhibitor, HNTs as inhibitor carrier, and ε-PLL, SA as well as CTS as encapsulating polyelectrolytes. The release controlling mechanism was analyzed by UV-vis technique and the key factors regulating inhibitor release rate are also confirmed. In 3.5 wt.% NaCl solutions the inhibitor can be timely released in response to the invasion of water. In addition, the releasing speed was enhanced with the increments of pH values of release mediums. Furthermore, the whole release process can lasts for 216 hours. The release behavior fulfills the requirements of sensitivity, selectivity and sustainability raised by long-term smart anticorrosive coatings. Both the solubility of inhibitor and the porosity of SA layer regulate the release rate of inhibitor. The outermost CTS layer offers MCs superior antimicrobic performance, while the complex encapsulation with ε-PLL and SA significantly prolongs the release process. As comparing with the reference coating, the proposed water-based epoxy coating with 1 wt.% MCs embedded can provide an excellent corrosion protective. In addition, the tensile strength of proposed coating is increased by 20% and the wet adhesion (72 hours) is also increased by 20%. arine environment.

    Keywords:

    Corrosion Engineering; Corrosion Inhibitors; Corrosion Protection; Types And Conditions Of Corrosion; Smart microcapsule; Halloysite clay nanotubes; Chitosan; Dual-pH sensitive; Electronic packaging coating; Anti-mildew

    References:

    [1] Q. Wang, W. Wang, X. Ji, X. Hao, C. Ma, W. Hao, X. Li, S. Chen, ACS Appl Mater Interfaces, 13 (2021) 3139-3152
    [2] D. Li, B. Gong, Y. Liu, Z. Dang, Chemical Engineering Journal, 415 (2021)
    [3] Z. Wu, D. Huang, W. Wei, W. Wang, X. Wang, Q. Wei, M. Niu, M. Lin, J. Rao, Y. Xie, Journal of Cleaner Production, 209 (2019) 273-282
    [4] R. Zhang, Y. Li, Y. He, D. Qin, Journal of Materials Research and Technology, 9 (2020) 10148-10156

    Cite this article as:

    Li Y. (2023). DESIGNING ANTI-MILDEW SMART MICROCAPSULES TO IMPROVE SELF-HEALING PERFORMANCE FOR WATER-BASED EPOXY COATINGS. In F. Kongoli, R. Fehrmann, V. Papangelakis, I. Paspaliaris, G. Saevarsdottir, G. Kipouros, R. Singh, F. Wang, D. Macdonald, R. Gupta, M. Barinova, F. Ahmed, H. Ozgunay, K. Tang, N.N. Thanh, C. Gaidau, K. Kolomaznik (Eds.), Sustainable Industrial Processing Summit Intl. Symp on Electrochemistry, Molten Salts, Corrosion and Recycling (pp. 103-104). Montreal, Canada: FLOGEN Star Outreach