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首页> 外文期刊>Journal of Applied Polymer Science >Evaluating Fouling-Resistance and Fouling-Release Performance of Smart Polyurethane Surfaces: An Outlook for Efficient and Environmentally Benign Marine Coatings
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Evaluating Fouling-Resistance and Fouling-Release Performance of Smart Polyurethane Surfaces: An Outlook for Efficient and Environmentally Benign Marine Coatings

机译:评估智能聚氨酯表面的防污性能和防污性能:高效环保的海洋涂料的前景

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摘要

Various environmentally friendly approaches have been studied in recent years for effectively controlling biofouling on marine structures. Among these, two distinct and successful approaches are (1) the use of hydrophilic surfaces that control biofouling by resisting the adhesion of fouling organisms and (2) the use of hydrophobic elastomeric surfaces that function by facilitating their easy removal. In this study, we attempted to investigate amphiphilic surfaces for their effectiveness in controlling marine biofouling. Polyurethane surfaces containing tethered hydrophilic, hydrophobic, and amphiphilic moieties were designed and synthesized. The wetting behaviors of these surfaces, as a function of the external environment, were studied by dynamic contact angle (DCA) measurements and their morphologies by atomic force microscopy (AFM). The results from DCA measurements and AFM postulate interesting characteristics of the amphiphilic surfaces. Bioassays with the green fouling alga Ulva showed that the amphiphilic surfaces had fouling-resistance and fouling-release potential and provide an insight into the scope of the development of smart marine coatings.
机译:近年来,已经研究了各种对环境友好的方法,以有效地控制海洋结构上的生物污垢。在这些方法中,两种截然不同且成功的方法是(1)使用亲水性表面来控制结垢生物的粘附来控制生物结垢,以及(2)使用疏水性弹性体表面来促进其易于去除,从而发挥作用。在这项研究中,我们试图研究两亲性表面在控制海洋生物污染方面的有效性。设计并合成了包含束缚的亲水,疏水和两亲性部分的聚氨酯表面。这些表面的润湿行为,作为外部环境的函数,是通过动态接触角(DCA)测量和通过原子力显微镜(AFM)对其形态进行研究的。 DCA测量和AFM的结果假定两亲表面具有有趣的特征。用绿色污垢藻类Ulva进行的生物测定表明,两亲表面具有抗污性和污垢释放潜能,并为智能海洋涂料的开发范围提供了见识。

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