Print Email Facebook Twitter Dual-action smart coatings with a self-healing superhydrophobic surface and anti-corrosion properties Title Dual-action smart coatings with a self-healing superhydrophobic surface and anti-corrosion properties Author Qian, Hongchang (University of Science and Technology Beijing) Xu, Dake (Chinese Academy of Sciences) Du, Cuiwei (University of Science and Technology Beijing) Zhang, Dawei (University of Science and Technology Beijing) Li, Xiaogang (University of Science and Technology Beijing) Huang, Luyao (University of Science and Technology Beijing) Deng, Leping (University of Science and Technology Beijing) Tu, Yunchao (University of Science and Technology Beijing) Mol, J.M.C. (TU Delft (OLD) MSE-6) Terryn, H.A. (TU Delft (OLD) MSE-1; Vrije Universiteit Brussel) Date 2017 Abstract This work introduces a new self-healing superhydrophobic coating based on dual actions by the corrosion inhibitor benzotriazole (BTA) and an epoxy-based shape memory polymer (SMP). Damage to the surface morphology (e.g., crushed areas and scratches) and the corresponding superhydrophobicity are shown to be rapidly healed through a simple heat treatment at 60 °C for 20 min. Electrochemical impedance spectroscopy (EIS) and scanning electrochemical microscopy (SECM) were used to study the anti-corrosion performance of the scratched and the healed superhydrophobic coatings immersed in a 3.5 wt% NaCl solution. The results revealed that the anti-corrosion performance of the scratched coatings was improved upon the incorporation of BTA. After the heat treatment, the scratched superhydrophobic coatings exhibited excellent recovery of their anti-corrosion performance, which is attributed to the closure of the scratch by the shape memory effect and to the improved inhibition efficiency of BTA. Furthermore, we found that the pre-existing corrosion product inside the coating scratch could hinder the scratch closure by the shape memory effect and reduce the coating adhesion in the scratched region. However, the addition of BTA effectively suppressed the formation of corrosion products and enhanced the self-healing and adhesion performance under these conditions. Importantly, we also demonstrated that these coatings can be autonomously healed within 1 h in an outdoor environment using sunlight as the heat source. Subject Self-healing coatingsuperhydrophobic surfacecorrosion inhibitor To reference this document use: http://resolver.tudelft.nl/uuid:1824339d-3c3e-4e5c-b6d9-2340d084e831 DOI https://doi.org/10.1039/c6ta10903a Embargo date 2018-01-07 ISSN 2050-7488 Source Journal of Materials Chemistry A, 5 (5), 2355-2364 Part of collection Institutional Repository Document type journal article Rights © 2017 Hongchang Qian, Dake Xu, Cuiwei Du, Dawei Zhang, Xiaogang Li, Luyao Huang, Leping Deng, Yunchao Tu, J.M.C. Mol, H.A. Terryn Files PDF Dual_action_smart_coating ... ureTUD.pdf 1.2 MB Close viewer /islandora/object/uuid:1824339d-3c3e-4e5c-b6d9-2340d084e831/datastream/OBJ/view