TY - JOUR
T1 - Epoxy resin coatings with the competitive relationship of hydrophobic and aerophilic towards anticorrosion application
AU - Ma, Huachao
AU - Zhang, Xuyang
AU - Ding, Zuoxin
AU - Wang, Yu
AU - Li, Junfeng
AU - Zhu, Ying
AU - Wan, Detian
AU - Lv, Kuilin
N1 - Publisher Copyright:
© 2026 Elsevier B.V. All rights are reserved, including those for text and data mining, AI training, and similar technologies.
PY - 2026/6
Y1 - 2026/6
N2 - Recently, hydrophobic and corrosion-resistant coatings have garnered significant attention. However, existing strategies often focus on enhancing hydrophobicity without considering that higher hydrophobicity may attract more air, increasing the exposure of the coating to oxygen molecules and thereby reducing its anti-corrosion performance. In this study, a series of coatings with varying hydrophobicity were prepared by controlling variables. A non-monotonic relationship was observed between hydrophobicity and corrosion resistance, with the coatings' performance first improving then declining. Through simulation calculations, it was found that coatings with balanced hydrophobicity and gas affinity exhibited approximately an order of magnitude improvement in corrosion resistance compared to those with the highest hydrophobicity. DFT calculations further confirm that moderate H2O adsorption can optimize the repulsion of *O, reducing the possibility of contact between the substrate H2O and *O, thereby enhancing the anti-corrosion performance of the coating. This reveals that the relationship between surface wettability and anti-corrosion performance is not simply linear but involves a dynamic equilibrium critical point. Further experimental characterization showed that moderate hydrophobicity enables the coating surface to not only repel moisture, reducing electrolyte penetration pathways, but also avoid excessive oxygen molecule accumulation due to extreme gas affinity. In this balanced state, microstructural defects within the coating are effectively covered, and the resistance significantly increases, resulting in superior long-term stability during simulated salt spray corrosion accelerated aging tests. By deconstructing the paradigm that correlates increased hydrophobicity with superior corrosion resistance, this study paves the way for the development of durable hydrophobic coatings with theoretically grounded and practically viable performance.
AB - Recently, hydrophobic and corrosion-resistant coatings have garnered significant attention. However, existing strategies often focus on enhancing hydrophobicity without considering that higher hydrophobicity may attract more air, increasing the exposure of the coating to oxygen molecules and thereby reducing its anti-corrosion performance. In this study, a series of coatings with varying hydrophobicity were prepared by controlling variables. A non-monotonic relationship was observed between hydrophobicity and corrosion resistance, with the coatings' performance first improving then declining. Through simulation calculations, it was found that coatings with balanced hydrophobicity and gas affinity exhibited approximately an order of magnitude improvement in corrosion resistance compared to those with the highest hydrophobicity. DFT calculations further confirm that moderate H2O adsorption can optimize the repulsion of *O, reducing the possibility of contact between the substrate H2O and *O, thereby enhancing the anti-corrosion performance of the coating. This reveals that the relationship between surface wettability and anti-corrosion performance is not simply linear but involves a dynamic equilibrium critical point. Further experimental characterization showed that moderate hydrophobicity enables the coating surface to not only repel moisture, reducing electrolyte penetration pathways, but also avoid excessive oxygen molecule accumulation due to extreme gas affinity. In this balanced state, microstructural defects within the coating are effectively covered, and the resistance significantly increases, resulting in superior long-term stability during simulated salt spray corrosion accelerated aging tests. By deconstructing the paradigm that correlates increased hydrophobicity with superior corrosion resistance, this study paves the way for the development of durable hydrophobic coatings with theoretically grounded and practically viable performance.
KW - Aerophilic
KW - Anticorrosion application
KW - Competitive relationship
KW - Hydrophobic
UR - https://www.scopus.com/pages/publications/105035597332
U2 - 10.1016/j.porgcoat.2026.110095
DO - 10.1016/j.porgcoat.2026.110095
M3 - 文章
AN - SCOPUS:105035597332
SN - 0300-9440
VL - 215
JO - Progress in Organic Coatings
JF - Progress in Organic Coatings
M1 - 110095
ER -