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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Bioinspired Aryldiazonium Carbohydrate Coatings: Reduced Adhesion of Foulants at Polymer and Stainless Steel Surfaces in a Marine Environment
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Bioinspired Aryldiazonium Carbohydrate Coatings: Reduced Adhesion of Foulants at Polymer and Stainless Steel Surfaces in a Marine Environment

机译:Bioinspired Aryldia鎓碳水化合物涂料:在海洋环境中的聚合物和不锈钢表面的污垢粘附降低

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Surface treatments that minimize biofouling in marine environments are of interest for a variety of applications such as environmental monitoring and aquaculture. We report on the effect of saccharide coatings on biomass accumulation at the surface of three materials that find applications in marine settings: stainless steel 316 (SS316), Nylon-6 (N-6), and poly(ether sulfone) (PES). Saccharides were immobilized via aryldiazonium chemistry; SS316 and N-6 samples were subjected to oxidative surface pretreatments prior to saccharide immobilization, whereas PES was modified via direct reaction of pristine surfaces with the aryldiazonium cations. Functionalization was confirmed by a combination of X-ray photoelectron spectroscopy, contact angle experiments, and fluorescence imaging of lectin saccharide binding. Saccharide immobilization was found to increase surface hydrophilicity of all materials tested, while laboratory tests demonstrate that the saccharide coating results in reduced protein adsorption in the absence of specific protein saccharide interactions. The performance of all three materials after modification with aryldiazonium saccharide films was tested in the field via immersion of modified coupons in coastal waters over a 20 day time period. Results from combined infrared spectroscopy, light microscopy, scanning electron and He-ion microscopy, and adenosine-triphosphate content assays show that the density of retained biomass at surfaces is significantly lower on carbohydrate modified samples with respect to unmodified controls. Therefore, functionalization and field test results suggest that carbohydrate aryldiazonium layers could find applications as fouling resistant coatings in marine environments.
机译:在海洋环境中最小化生物污染的表面处理对于环境监测和水产养殖等各种应用感兴趣。我们报告了糖涂层对在海洋环境中应用的三种材料表面的生物量积累的影响:不锈钢316(SS316),尼龙-6(N-6)和聚(醚砜)(PE)。通过阿里德德二氮杂化化学固定糖化;在糖固定之前经受SS316和N-6样品进行氧化表面预处理,而PE通过用丙烯二氮阳离子的原始表面的直接反应进行改性。通过X射线光电子能谱,接触角实验和凝集素糖结合的荧光成像来证实官能化。发现糖类固定增加所测试的所有材料的表面亲水性,而实验室试验表明糖涂层导致在没有特定的蛋白质糖相互作用的情况下降低蛋白质吸附。通过浸入20天时间段的沿海水域中的改性优惠券,在该领域进行修饰后所有三种材料的性能。结合红外光谱,光学显微镜,扫描电子和He离子显微镜以及腺苷 - 三磷酸含量测定结果表明,在碳水化合物改性样品相对于未修饰的对照的情况下,表面在表面的保留生物质的密度显着降低。因此,官能化和现场测试结果表明,碳水化合物芳纶层层可以在海洋环境中找到应用作为污垢抗性涂层。

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