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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Copper-coordinating, polymers for marine anti-fouling coatings: A physicochemical and electrochemical study of ternary system of copper, PMMA and poly(TBTA)
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Copper-coordinating, polymers for marine anti-fouling coatings: A physicochemical and electrochemical study of ternary system of copper, PMMA and poly(TBTA)

机译:用于船舶防污涂料的配铜聚合物:铜,PMMA和聚(TBTA)三元体系的物理化学和电化学研究

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摘要

Biofouling is a general problem in marine applications. Copper has been used as an anti-biofouling agent in marine coatings for decades; however, its widespread use has resulted in regulatory restrictions due to high copper concentrations in harbors and areas with limited water circulation. Here we present a new approach for anti-fouling coatings using microparticles of poly(tris[(benzyltriazol)methyl]amine) (poly(TBTA)) polymers to absorb and control the interaction between a surface coating and the copper naturally present in seawater with the intention of creating a flux of copper across the water/coating interface. The preparation and characterization of microparticles of poly(TBTA) as well as hybrid PMMA: poly(TBTA) has been described to study the feasibility of tuning the copper-coordination properties of a generic marine coating using these paint-compatible microparticles. The properties of microparticles of poly(TBTA), PMMA and the PMMA: poly(TBTA) hybrid were therefore studied using cyclic voltammetry and NMR spectroscopy. It is demonstrated that the copper ions interact specifically with microparticles containing the coordinating polymer poly(TBTA) and that these microparticles have a high absorption capacity of more than 5 wt% for copper. (C) 2016 Published by Elsevier B.V.
机译:生物污损是海洋应用中的普遍问题。数十年来,铜一直被用作船舶涂料中的防生物污垢剂。但是,由于港口和水循环受限地区的铜浓度较高,其广泛使用已导致监管限制。在这里,我们提出了一种新的防污涂层方法,该方法使用了聚三([[苄基三唑)甲基]胺)(聚(TBTA))聚合物微粒来吸收和控制表面涂层与海水中天然存在的铜之间的相互作用。目的是在水/涂层界面上形成铜熔剂。已经描述了聚(TBTA)以及杂化PMMA:聚(TBTA)微粒的制备和表征,以研究使用这些与涂料相容的微粒来调节通用船用涂料的铜配位性能的可行性。因此,使用循环伏安法和NMR光谱研究了聚(TBTA),PMMA和PMMA:聚(TBTA)杂化物的微粒特性。已经证明铜离子与含有配位聚合物poly(TBTA)的微粒特异性地相互作用,并且这些微粒对铜具有大于5wt%的高吸收能力。 (C)2016由Elsevier B.V.发布

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