生物污染
材料科学
聚合物
杀生物剂
涂层
丙烯酰胺
共聚物
化学工程
基质(水族馆)
聚丙烯酰胺
高分子化学
有机化学
复合材料
化学
生物化学
海洋学
膜
工程类
地质学
作者
Chiaki Yoshikawa,Ryoma Takagi,Tadashi Nakaji‐Hirabayashi,Toshiro Ochi,Yasushi KAWAMURA,Helmut Thissen
标识
DOI:10.1021/acsami.2c06647
摘要
We report a next-generation, biocide-free, and durable marine antifouling coating technology. To achieve this, we combined two different polymers previously developed by us. First, we synthesized well-defined 2-hydroxypropyl acrylamide (HPA) based bottlebrush polymers with concentrated polymer brush (CPB) structures, which exhibit excellent bioinertness, and second, we synthesized photoreactive copolymers of 2-hydroxypropyl acrylamide (HPA) and N-benzophenone acrylamide (BPA), which can be cross-linked by exposure to sunlight for 30 min. Simply mixing the bottlebrush polymers with the photoreactive copolymers and applying these as a coating provided a scalable method for achieving effective antifouling properties in one step on a broad range of polymer substrate materials. The resistance of bottlebrushes against acid and base hydrolysis was demonstrated in accelerated degradation experiments at 80 °C, and the coating thickness was found to be stable after 3 months of incubation in sea water. Optimized coatings prevented cypris larva attachment for up to 9 days and prevented the settling of marine organisms in the sea for up to 73 days. Due to the ease of application, long-term durability, and effective antifouling performance, our bottlebrush coating technology is expected to be exploited in biocide-free marine paints.
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