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Study of the anti-fouling polymer sheet which used Biomimetics Technique

机译:用仿生技术研究防污聚合物片

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It has long been known that snail shells have an excellent anti-fouling function, as it is said that there are no dirty snails. The snails encountered during the baiu rainy season in Japan always have clean, shining shells. These shells are known to have convex-concave nanoscale structures on their surface (roughness on the order of approximately 200 nm) that promote the formation of a film of water on the shell surface, creating an ultra-hydrophilic nanoscale structure that repels oils and stains . Creating such an ultra-hydrophilic nanoscale structure on a polymer surface should allow us to produce an antifouling polymer sheet. Additionally, producing a tube from a polymer film with this nanoscale structure should make it possible to create a tube with high antifouling properties. The field of technologies based on imitating properties and structures observed in living organisms in nature is called biomimetics . This paper reports on the development of antifouling sheets and tubes with antifouling functions fabricated using the above technologies. The first step was creating a mold with an artificial snail shell structure using ZrO_2 nanoparticles, whose patterns were then transferred to polymer with nanoimprint technology. These antifouling sheets and tubes are expected to see wide use for medical applications.
机译:众所周知,蜗牛壳具有出色的防污功能,因为据说没有肮脏的蜗牛。在日本白雨季遇到的蜗牛,总是有干净,光亮的贝壳。已知这些壳在其表面上具有凸凹的纳米级结构(粗糙度约200 nm),可促进在壳表面上形成水膜,从而形成超亲水的纳米级结构,从而排斥油脂和污渍。 。在聚合物表面上创建这种超亲水性的纳米级结构应使我们能够生产出防污聚合物片材。另外,由具有这种纳米级结构的聚合物膜生产管子应使制造具有高防污性能的管子成为可能。基于模仿自然界中的活生物体中观察到的特性和结构的技术领域被称为仿生技术。本文报道了使用上述技术制造的具有防污功能的防污片材和管材的发展。第一步是使用ZrO_2纳米粒子创建具有人工蜗牛壳结构的模具,然后使用纳米压印技术将其图案转移到聚合物上。这些防污薄板和管材有望在医疗应用中得到广泛应用。

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