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Imprinting of metal receptors into multilayer polyelectrolyte films: fabrication and applications in marine antifouling

机译:金属受体在多层聚电解质薄膜中的印记:船舶防污剂的制备和应用

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摘要

Polymeric films constructed using the layer-by-layer (LbL) fabrication process were employed as a platform for metal ion immobilization and applied as a marine antifouling coating. The novel Cu2+ ion imprinting process described is based on the use of metal ion templates and LbL multilayer covalent cross-linking. Custom synthesized, peptide mimicking polycations composed of histidine grafted poly(allylamine) (PAH) to bind metal ions, and methyl ester containing polyanions for convenient cross-linking were used in the fabrication process. Two methods of LbL film formation have been investigated using alternate polyelectrolyte deposition namely non-imprinted LbLA, and imprinted LbLB. Both LbL films were cross linked at mild temperature to yield covalent bridging of the layers for improved stability in a sea water environment. A comparative study of the non-imprinted LbLA films and imprinted LbLB films for Cu2+ ion binding capacity, leaching rate and stability of the films was performed. The results reveal that the imprinted films possess enhanced affinity to retain metal ions due to the preorganization of imidazole bearing histidine receptors. As a result the binding capacity of the films for Cu2+ could be improved by seven fold. Antifouling properties of the resulting materials in a marine environment have been demonstrated against the settlement of barnacle larvae, indicating that controlled release of Cu ions was achieved.
机译:使用逐层(LbL)制造工艺构造的聚合物薄膜被用作固定金属离子的平台,并被用作海洋防污涂料。所述的新颖的Cu 2 + 离子压印工艺基于金属离子模板和LbL多层共价交联的使用。在制造过程中,使用了由组氨酸接枝的聚(烯丙胺)(PAH)结合金属离子的定制合成,模拟聚阳离子的肽,以及用于方便交联的含甲酯的聚阴离子。研究了使用交替聚电解质沉积的两种LbL成膜方法,即非印迹LbL A 和印迹LbL B 。两种LbL薄膜均在温和的温度下交联,以形成各层的共价桥接,从而改善了在海水环境中的稳定性。非印迹LbL A 膜与印迹LbL B 膜对Cu <的比较研究进行了薄膜的sup> 2 + 离子结合能力,浸出率和稳定性的研究。结果表明,由于带有组氨酸受体的咪唑的预组织,印迹膜具有更高的保留金属离子的亲和力。结果,膜对Cu 2 + 的结合能力可提高七倍。已经证明了所得材料在海洋环境中的防污性能可防止藤壶幼虫的沉降,表明实现了铜离子的控制释放。

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