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Self-repairing silicone coatings for marine anti-biofouling

机译:用于海洋防生的自修复硅氧烷涂料

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摘要

Marine biofouling is one of the most challenging problems today. Silicone polymer based coatings with a low surface energy and elasticmodulus can effectively inhibit or release biofouling. However, their non-repairable properties and poor antifouling ability under static conditions limit their applications. Here, we report a self-repairing coating consisting of poly(dimethylsiloxane) based polyurea (PDMS-PUa) and a small amount of organic antifoulant (4,5-dichloro-2-n-octyl-4-isothiazolin-3-one) (DCOIT). The coating can completely recover its mechanical properties after damage either in air or artificial seawater at room temperature. Such recovery can be accelerated at a higher temperature. Moreover, the release rate of DCOIT is almost constant and can be regulated by its concentration. Six-month marine field tests demonstrate that the system has a good antifouling/fouling release performance even under static conditions.
机译:海洋生物污染是今天最具挑战性的问题之一。 基于硅氧烷聚合物的具有低表面能和弹性模型的涂层可以有效地抑制或释放生物燃气。 然而,在静态条件下,它们的不可修复的性质和防污能力差限制了它们的应用。 在这里,我们报告了由聚(二甲基硅氧烷)基的多脲(PDMS-PUA)和少量有机抗废气(4,5-二氯-2-辛基-4-异噻唑啉-3-一)组成的自修复涂层。 (DCoit)。 涂层可以在室温下在空气或人造海水中损坏后完全恢复其机械性能。 这种回收可以在更高的温度下加速。 此外,DCoit的释放速率几乎是恒定的,并且可以通过其浓度来调节。 六个月的海洋现场测试表明,即使在静态条件下,该系统也具有良好的防污/污垢释放性能。

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