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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Biomimetics for early stage biofouling prevention: templates from insect cuticles
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Biomimetics for early stage biofouling prevention: templates from insect cuticles

机译:防止早期生物污染的仿生物:昆虫表皮的模板

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摘要

A biomimetic antifouling material study was carried out utilising superhydrophobic cicada and dragonfly wings replicated with a polymer (epoxy resin). They were tested in a marine biofouling study for up to 1 week in addition to biofouling assays of protein, carbohydrate and DNA absorption. The materials were compared against a commercial antifouling paint and a polymeric smooth surface constituting a control sample. The replicated surfaces demonstrated superior antifouling properties in comparison to the control and similar efficiency in DNA (10% reduction), protein and carbohydrate adsorption (15%) to the commercial anti-fouling paint. As the fabricated surfaces have roughness at the nanometre scale it is probable that the low adsorption properties, at least in the early stages, may be related to air trapped at the surface. Interestingly the most disordered replicated surface (dragonfly wing replicate) demonstrated the lowest values of absorption.
机译:仿生防污材料的研究是利用超疏水性蝉和蜻蜓翅与聚合物(环氧树脂)复制而进行的。除蛋白质,碳水化合物和DNA吸收的生物污损测定外,它们还在海洋生物污损研究中进行了长达1周的测试。将这些材料与商用防污漆和构成对照样品的聚合物光滑表面进行了比较。与对照相比,复制的表面表现出优异的防污性能,并且与商用防污漆相比在DNA(减少10%),蛋白质和碳水化合物的吸附(15%)方面具有相似的效率。由于所制造的表面具有纳米级的粗糙度,因此至少在早期阶段,低吸附性能可能与表面处捕获的空气有关。有趣的是,最混乱的复制表面(蜻蜓翅膀复制)显示出最低的吸收值。

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