Tree root-inspired robust superhydrophobic coatings with high permeation for porous structures

Superhydrophobic coatings have tremendous potential for protecting porous structures from corrosion. However, the weak adhesion and poor abrasion resistance have long been challenges for their real-life applications. Inspired by tree roots, we prepared a robust superhydrophobic coating by spraying f...

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Veröffentlicht in:iScience 2021-10, Vol.24 (10), p.103197-103197, Article 103197
Hauptverfasser: Zhang, Guoliang, Xie, Qingyi, Chi, Jinfeng, Chen, Yuxian, Zheng, Hao, Ma, Chunfeng, Zhang, Guangzhao
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Sprache:eng
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Zusammenfassung:Superhydrophobic coatings have tremendous potential for protecting porous structures from corrosion. However, the weak adhesion and poor abrasion resistance have long been challenges for their real-life applications. Inspired by tree roots, we prepared a robust superhydrophobic coating by spraying fluorinated nanodiamonds (FNDs) on a permeable epoxy coating. The epoxy can not only coat the surface but also permeate deeply inside a porous substrate and consolidate in situ as tree roots in soil. Thus, the structure is thoroughly reinforced where the pull-off strength reaches 9.4 MPa for concrete. On the other hand, the surface is covered with immobilized FNDs, forming a superhydrophobic surface. Thanks to the ultra-hard FNDs, the coating surface has high abrasion resistance and its superhydrophobicity holds even after 100 abrasion cycles. Moreover, it exhibits self-cleaning, anti-icing, and anticorrosion performance. It is promising in protecting various porous structures such as concrete, wood, and untreated corroded steel. [Display omitted] •A tree root-inspired superhydrophobic coating for porous structures was developed•The epoxy coating with high permeability can consolidate in pores and cracks•The ultra-hard fluorinated nanodiamonds provides remarkable abrasion-resistance•The surface has excellent self-cleaning, anti-icing, and anticorrosive abilities Biomimetics; Nanomaterials; Surface science
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2021.103197