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首页> 外文期刊>ACS nano >Noradrenaline-functionalized hyperbranched fluoropolymer-poly(ethylene glycol) cross-linked networks as dual-mode, anti-biofouling coatings
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Noradrenaline-functionalized hyperbranched fluoropolymer-poly(ethylene glycol) cross-linked networks as dual-mode, anti-biofouling coatings

机译:去甲肾上腺素官能化的超支化含氟聚合物-聚(乙二醇)交联网络,作为双模防污涂料

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摘要

The strategy of decorating antibiofouling hyperbranched fluoropolymer-poly(ethylene glycol) (HBFP-PEG) networks with a settlement sensory deterrent, noradrenaline (NA), and the results of biofouling assays are presented. This example of a dual-mode surface, which combines both passive and active modes of antibiofouling, works in synergy to improve the overall antibiofouling efficiency against barnacle cyprids. The HBFP-PEG polymer surface, prior to modification with NA, was analyzed by atomic force microscopy, and a significant distribution of topographical features was observed, with a nanoscopic roughness measurement of 110 ± 8 nm. NA attachment to the surface was probed by secondary ion mass spectrometry to quantify the extent of polymer chain-end substitution with NA, where a 3- to 4-fold increase in intensity for a fragment ion associated with NA was observed and 39% of the available sites for attachment were substituted. Cytoskeletal assays confirmed the activity of tethered NA on adhering oyster hemocytes. Settlement assays showed deterrence toward barnacle cyprid settlement, while not compromising the passive biofouling resistance of the surface. This robust strategy demonstrates a methodology for the incorporation of actively antibiofouling moieties onto a passively antibiofouling network.
机译:介绍了用沉降感官去污剂去甲肾上腺素(NA)装饰抗生物结垢的超支化含氟聚合物-聚(乙二醇)(HBFP-PEG)网络的策略,以及生物结垢测定的结果。该双模式表面的示例结合了抗生物结垢的被动模式和有源模式,可协同工作以提高针对藤壶环虾的总体抗生物结垢效率。在用NA修饰之前,先用原子力显微镜分析HBFP-PEG聚合物表面,并观察到明显的形貌特征分布,纳米级粗糙度测量值为110±8 nm。 NA附着在表面上的现象通过二次离子质谱法进行了探测,以量化聚合物链末端被NA取代的程度,其中观察到与NA相关的碎片离子的强度增加了3至4倍,其中39%可用的附件站点被替换。细胞骨架分析证实了拴系的NA对粘附的牡蛎血细胞的活性。沉降测定显示出对藤壶塞浦路斯沉降的威慑力,而没有损害表面的被动生物积垢阻力。这种强有力的策略证明了将主动抗生物结垢部分掺入到被动抗生物结垢网络中的方法。

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