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Functional Catechol-Metal Polymers via Interfacial Polymerization for Applications in Water Purification

机译:通过界面聚合的功能性儿茶酚 - 金属聚合物用于水净化的应用

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摘要

Phenols and polyphenols have been used as a scaffold for generating multidimensional molecular architectures via complexation with metal ions. Here, we report the synthesis and characterization of metallopolymer films from three catechol derivatives having different alkyl/aryl substituents via complexation with iron and copper ions at the organic-water interface. Such interfacial polymerization is instantaneous, one step to generate functional materials, and gives good control over the organization of repeating units along the film. The films were transferred to different substrates such as filter paper, cotton, or polyester fabrics. The films are superhydrophobic with a contact angle >160 degrees which can be tuned by regulating the orientation of nonpolar groups at the interface during polymerization. In addition, the fabricated cloth membrane showed excellent oil/water separation efficiency of more than 99% even after 50 cycles. The polymers also showed good dye extraction capacity from aqueous solutions with fast kinetics data. Such metallopolymer networks can serve as a versatile material for applications in catalysis, protective coatings, drug delivery, water filtration membranes, and liquid separations.
机译:酚类和多酚已被用作通过与金属离子的络合产生多维分子架构的支架。在此,我们通过在有机水界面的铁和铜离子络合到具有不同烷基/芳基取代基的三种儿茶酚衍生物的三种儿茶酚衍生物的合成和表征。这种界面聚合是瞬间的,产生功能材料的一步,并对薄膜的重复单元进行良好控制。将薄膜转移到不同的基材,例如滤纸,棉或聚酯织物。薄膜是超疏水的,其接触角> 160度,可以通过在聚合过程中调节界面处的非极性基团的取向来调节。此外,即使在50次循环后,制造的布膜也显示出优异的油/水分离效率超过99%。聚合物还显示出具有快速动力学数据的水溶液的良好染料提取能力。这种金属聚合物网络可以用作催化作用,保护涂层,药物递送,水过滤膜和液体分离中的应用。

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