首页> 外文期刊>ACS applied materials & interfaces >Controlled Architecture of Dual-Functional Block Copolymer Brushes on Thin-Film Composite Membranes for Integrated 'Defending' and 'Attacking' Strategies against Biofouling
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Controlled Architecture of Dual-Functional Block Copolymer Brushes on Thin-Film Composite Membranes for Integrated 'Defending' and 'Attacking' Strategies against Biofouling

机译:薄膜复合膜上的双功能嵌段共聚物刷的受控体系结构,用于针对生物污染的集成“防御”和“攻击”策略

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摘要

We report a new macromolecular architecture of dual functional block copolymer brushes on commercial thin-film composite (TFC) membranes for integrated "defending" and "attacking" strategies against biofouling. Mussel-inspired catechol chemistry is used for a convenient immobilization of initiator molecules to the membrane surface with the aid of polydopamine (PDA). Zwitterionic polymer brushes with strong hydration capacity and quaternary ammonium salt (QAS) polymer brushes with bactericidal ability are sequentially grafted on TFC membranes via activators regenerated by electron transfer atom transfer radical polymerization (ARGET-ATRP), an environmentally benign and controlled polymerization method. Measurement of membrane intrinsic transport properties in reverse osmosis experiments shows that the modified TFC membrane maintains the same water permeability and salt selectivity as the pristine TFC membrane. Chemical force microscopy and protein/bacterial adhesion studies are carried out for a comprehensive evaluation of the biofouling resistance and antimicrobial ability, demonstrating low biofouling propensity and excellent bacterial inactivation for the modified TFC membrane. We conclude that this polymer architecture, with complementary "defending" and "attacking" capabilities, can effectively prevent the attachment of biofoulants and formation of biofilms and thereby significantly mitigate biofouling on TFC membranes.
机译:我们报告了新型双分子嵌段共聚物刷在商用薄膜复合材料(TFC)膜上的新的大分子体系结构,以针对生物污染综合“防御”和“攻击”策略。贻贝启发的儿茶酚化学用于借助聚多巴胺(PDA)方便地将引发剂分子固定在膜表面。通过对环境无害且受控的聚合方法,通过电子转移原子转移自由基聚合(ARGET-ATRP)再生的活化剂,将具有较强水合能力的两性离子聚合物刷和具有杀菌能力的季铵盐(QAS)聚合物刷顺序接枝到TFC膜上。在反渗透实验中对膜固有传输性能的测量表明,改性TFC膜保持与原始TFC膜相同的透水性和盐选择性。进行了化学力显微镜和蛋白质/细菌粘附研究,以全面评估生物污损性和抗微生物能力,证明了改性TFC膜的低生物污损倾向和出色的细菌灭活性。我们得出的结论是,这种聚合物结构具有互补的“防御”和“攻击”功能,可以有效地防止生物污垢的附着和生物膜的形成,从而显着减轻TFC膜上的生物污垢。

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