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首页> 外文期刊>ACS applied materials & interfaces >Hyperbranched Fluoropolymer-Polydimethylsiloxane-PoIy(ethylene glycol) Cross-Linked Terpolymer Networks Designed for Marine and Biomedical Applications: Heterogeneous Nontoxic Antibiofouling Surfaces
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Hyperbranched Fluoropolymer-Polydimethylsiloxane-PoIy(ethylene glycol) Cross-Linked Terpolymer Networks Designed for Marine and Biomedical Applications: Heterogeneous Nontoxic Antibiofouling Surfaces

机译:专为海洋和生物医学应用设计的超支化含氟聚合物-聚二甲基硅氧烷-聚(乙二醇)交联三元共聚物网络:异质无毒防污垢表面

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摘要

Synthesis of terpolymer coatings composed of hyperbranched fluoropolymers cross-linked with bisamino-propyl poly(ethylene glycol) and bisamino-propyl polydime-thylsiloxane (PDMS) was performed to generate antibiofouling surfaces. Nanoscale imaging and surface spectroscopy confirmed that this system possessed complex surface topographies and chemical compositions. Surface complexity was determined to be due to molecular interactions, phase segregation, and compositional gradients arising between the three components. A clear difference in surface behavior was observable before and after exposure to water. Antibiofouling characteristics were investigated by bovine serum albumin (BSA) adsorption studies; the terpolymer coating displayed a 60% greater resistance to protein adsorption in comparison to the fouling of a commercial antibiofouling silicone coating. The unique surface topography, topology, and chemical heterogeneity expressed at a variety of scales provide a robust regime for the generation of hardy, complex surfaces known to incorporate characteristics appropriate for antibiofouling applications. Thorough assessment of thermal responses and mechanical properties in relevant environments demonstrated a formulation platform immediately appropriate for consideration in marine and in vivo applications.
机译:进行了由与双氨基丙基聚(乙二醇)和双氨基丙基聚二甲基-丁基硅氧烷(PDMS)交联的超支化含氟聚合物组成的三元共聚物涂层的合成,以产生防污垢表面。纳米级成像和表面光谱学证实该系统具有复杂的表面形貌和化学成分。确定表面复杂性是由于这三种组分之间发生的分子相互作用,相分离和组成梯度所致。暴露于水之前和之后,表面行为有明显差异。通过牛血清白蛋白(BSA)吸附研究研究了抗污垢特性;与商用防污垢有机硅涂料的结垢相比,三元共聚物涂层对蛋白质吸附的抵抗力高60%。以各种规模表达的独特的表面形貌,拓扑和化学异质性为生成坚硬,复杂的表面提供了强大的机制,已知这些表面具有适合于抗污垢应用的特性。在相关环境中对热响应和机械性能的全面评估表明,该配方平台可立即用于海洋和体内应用。

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