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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Hydrophobic self-healing polymer coatings from carboxylic acid- and fluorine-containing polymer nanocontainers
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Hydrophobic self-healing polymer coatings from carboxylic acid- and fluorine-containing polymer nanocontainers

机译:来自羧酸和含氟聚合物纳米容器的疏水性自愈聚合物涂层

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The development of multifunctional nanocontainers for self-healing coatings is of great interest for environmental and healthcare applications. In this study, we developed a synthetic strategy for a hydrophobic and self-healing anticorrosion coating from carboxylic acid- and fluorine-containing nanocontainers. Initially, well-defined poly (acrylic acid-co-trifluoroethyl methacrylate) microspheres were synthesized with different cross-linking agents by precipitation polymerization. The carboxylic acid groups allow for pH-responsive function to control the release of the encapsulated healing inhibitor to the cracks of polymer coatings on metal surfaces. The fluorinated groups of the polymer nanocontainers can endow the coatings with hydrophobicity. The as-synthesized multifunctional nanocontainers were further doped into the polymer coatings to generate self-healing coatings. The self-healing polymer coatings exhibited good crack inhibition since the inhibitor benzotriazole in pH-responsive nanocontainers can autonomously form new nanobarriers on metal surfaces around cracks after corrosion occurs. Furthermore, due to the micro/nanostructures of hydrophobic microspheres in the polymer coatings, the self-healing coating also exhibited good water resistance. The hydrophobic self-healing polymer coatings from the as-synthesized carboxylic acid- and fluorine-containing nanocontainers for anticorrosion were analyzed by electrochemical impedance spectroscopy (EIS).
机译:用于自我愈合涂料的多功能纳米容器的开发对于环境和医疗保健应用具有很大的兴趣。在这项研究中,我们开发了一种合成策略,用于含有羧酸和含氟纳米容纳液的疏水性和自愈的防腐涂层。最初,通过沉淀聚合用不同的交联剂合成明确定义的聚(丙烯酸 - 共三氟甲基甲基丙烯酸甲酯)微球。羧酸基团允许pH-响应函数控制包封的愈合抑制剂的释放到金属表面上的聚合物涂层的裂缝中。聚合物纳米电池的氟化基团可以赋予疏水性的涂层。将AS合成的多功能纳米容器进一步掺杂到聚合物涂层中以产生自愈合涂层。自愈合聚合物涂层表现出良好的裂纹抑制,因为pH-响应纳米细胞器中的抑制剂苯并三唑可以在发生腐蚀后在裂缝周围的金属表面上自动形成新的纳米载体。此外,由于聚合物涂层中疏水微球的微/纳米结构,自愈涂层也表现出良好的耐水性。通过电化学阻抗光谱(EIS)分析来自含有合成的羧酸和含氟纳米容器的疏水性自愈聚合物涂层,用于防腐​​剂(EIS)。

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