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Mussel-Inspired Superhydrophobic Surfaces on 316L Stainless Steel with Enhanced Corrosion Resistance

机译:贻贝启发了316L不锈钢的超疏水表面,具有增强的耐腐蚀性

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摘要

Inspired by mussel adhesive protein, the uniform, compact, and superhydrophobic film was constructed on the 316L stainless steel (316L SS) using self-polymerization of dopamine (DA) and further functionalization of the resulting polydopamine film with 1H,1H,2H,2H-perfluorodecanethiol (PFDT) to form a thin fluorinated polydopamine (fPDA) coating. Electrochemical analysis revealed that the superhydrophobic fPDA coating has an outstanding potential, lower corrosion current density, and higher coating resistance to protect 316L SS against corrosion in a 3 wt pct NaCl environment. Characterization of the corrosion attack by scanning vibrating electrode technology (SVET) reveals the cooperative effects of superhydrophobicity and strong adhesive ability of the fPDA coating on the highly anticorrosion capability of 316L SS in a 3 wt pct NaCl aqueous solution.
机译:由贻贝粘合剂蛋白质,使用多巴胺(DA)的自聚合和通过1H,1H,2H,2H的自聚 - 聚二胺膜进一步官能化,在316L不锈钢(316LS)上构建均匀,紧凑和超疏水膜。 - 氟二癸醇(PFDT)形成薄氟化多氨基胺(FPDA)涂层。 电化学分析表明,超疏水性FPDA涂层具有出色的电位,耐腐蚀电流密度和更高的涂层抗性,以保护316LS对3wt PCT NaCl环境中的腐蚀。 通过扫描振动电极技术(SVET)表征腐蚀攻击(SVET)揭示了FPDA涂层的超疏水性和强粘合剂能力在3wt PCT NaCl水溶液中的高度防腐能力上的合作效应。

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