超疏水涂层表面黏附性能对海洋防腐和抑制海洋 微生物附着行为的影响
超疏水涂层表面黏附性能对海洋防腐和抑制海洋 微生物附着行为的影响
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广东省基础与应用基础研究基金联合基金项目(2019A1515110631)

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Effect of Water Adhesion of Superhydrophobic Coatings on Their Corrosion Resistance and Antibacterial Behaviors in the Simulated Marine Environments
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the Guangdong Province Basic and Applied Basic Research Fund (Guangdong Natural Science Fund) (2019A1515110631)

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    摘要:

    目前关于超疏水涂层表面黏附性能对其腐蚀性能和表面细菌行为的影响不甚清楚。该文通过 调控聚脲醛纳米颗粒比例,采用喷涂法在 Q235 钢表面制备了具有不同黏附性能的超疏水涂层,并研 究了表面黏附性能对其防腐、抑菌行为的影响。电化学测试结果表明,滚动角<10°的低黏附超疏水 涂层具有较大的电荷转移电阻和较低的腐蚀电流密度,其防腐能力显著优于滚动角为 175°的高黏附超 疏水涂层。结晶紫实验结果表明,与 Q235 基体相比,高黏附和低黏附超疏水涂层均能显著抑制铜绿 假单胞菌的附着,其中低黏附超疏水涂层抑菌率为 70.3%,表现出更为优异的抑制细菌附着性能。

    Abstract:

    Up till now, the effects of the water adhesion of superhydrophobic coating on its corrosion resistance and antibacterial behaviors are not clear. In this study, superhydrophobic coatings with different water adhesion were successfully fabricated by spraying paints with different percentages of poly (ureaformaldehyde) nanoparticles (PUF NPs) on the Q235 substrate. The electrochemical results showed the lowadhesion superhydrophobic coating with the sliding angle less than 10° exhibited higher charge transfer resistance and lower corrosion current density than the high-adhesion superhydrophobic coating with the sliding angle of 175°. It suggested that the low-adhesion superhydrophobic coatinghad better corrosion resistance compared to the high-adhesion superhydrophobic coating. The crystal violet staining result revealed that the superhydrophobic coatings with high-adhesion and low-adhesion both could significantly restrain the adhesion of P. aeruginosa compared to Q235 substrate, and the superhydrophobic coating with low-adhesion exhibits a more excellent antibacterial capability at the antibacterial rate of 70.3%.

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引文格式
张欢欢,赵 颖.超疏水涂层表面黏附性能对海洋防腐和抑制海洋 微生物附着行为的影响 [J].集成技术,2021,10(2):19-28

Citing format
ZHANG Huanhuan, ZHAO Ying. Effect of Water Adhesion of Superhydrophobic Coatings on Their Corrosion Resistance and Antibacterial Behaviors in the Simulated Marine Environments[J]. Journal of Integration Technology,2021,10(2):19-28

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  • 在线发布日期: 2021-03-24
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