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Designing environmentally benign modified silica resin coatings with biomimetic textures for antibiofouling

机译:设计具有仿生纹理的环保型改性二氧化硅树脂涂料,以防污垢

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Siloxane modified acrylic resin coatings with positive and negative replication textures were successfully fabricated by biomimicking the surface structures of natural lotus leaf and white crab shell via a replication method. The physical and chemical properties of the as-prepared coatings were systematically characterized by FT-IR spectroscopy, SEM, AFM and contact angle measurements. Moreover, the antifouling (AF) property of the biomimetic textured surfaces was tested via the settlement assay with two microalgae of different sizes. The results indicated that the micromastoids and microdimples of the lotus leaf and white crab shell could significantly inhibit the settlement of microalgae. Both biomimetic textured coatings with positive and negative lotus leaf morphology can reduce 73% attachment of Closterium and 74% attachment of Navicula. Both biomimetic textured coatings with positive and negative white crab shell morphology could reduce over 65% attachment of Closterium and Navicula. Different antifouling mechanisms of the biomimetic textured coatings were analyzed based on three key factors, including surface wettability, morphology, and algae size.
机译:通过仿制天然荷叶和白色蟹壳的表面结构,通过复制方法成功地制造了具有正复制和负复制纹理的硅氧烷改性丙烯酸树脂涂料。通过FT-IR光谱,SEM,AFM和接触角测量系统地表征了所制备涂层的物理和化学性质。此外,通过沉降试验用两种不同尺寸的微藻测试了仿生纹理表面的防污(AF)性能。结果表明,荷叶和白色蟹壳的微乳突和微酒窝可以显着抑制微藻的沉降。具有阳性和阴性荷叶形态的仿生纹理涂层都可以减少梭菌附着力的73%和Navicula附着力的74%。具有阳性和阴性白蟹壳形态的仿生纹理涂层均可以减少超过65%的梭菌和纳维藻附着。基于三个关键因素分析了仿生纹理涂层的不同防污机理,包括表面润湿性,形态和藻类大小。

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