AI Article Synopsis

  • Researchers are developing durable superhydrophobic coatings to prevent erosion and corrosion, especially for gas pipelines.
  • A unique coating inspired by conch shell microstructures uses citric acid to create a porous layer, enhancing wear resistance and water repellency.
  • This innovative design enables multifunctional applications like self-cleaning surfaces and antifouling coatings for medical devices, maintaining effectiveness even after harsh conditions.

Article Abstract

Durable superhydrophobic anti-erosion/anticorrosion coatings are highly demanded across various applications. However, achieving coatings with exceptional superhydrophobicity, mechanical strength, and corrosion resistance remains a grand challenge. Herein, a robust microstructure coating, inspired by the cylindrical structures situated on the surface of conch shell, for mitigating erosion and corrosion damages in gas transportation pipelines is reported. Specifically, citric acid monohydrate as a pore-forming agent is leveraged to create a porous structure between layers, effectively buffering the impact on the surface. As a result, the coating demonstrates remarkable wear resistance and water repellency. Importantly, even after abrasion by sandpaper and an erosion loop test, the resulting superhydrophobic surfaces retain the water repellency. The design strategy offers a promising route to manufacturing multifunctional materials with desired features and structural complexities, thereby enabling effective self-cleaning and antifouling abilities in harsh operating environments for an array of applications, including self-cleaning windows, antifouling coatings for medical devices, and anti-erosion/anticorrosion protection, among other areas.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10966568PMC
http://dx.doi.org/10.1002/advs.202305839DOI Listing

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