Fang Fang, Liu Peiren, Lin Weibin, Alimi Lukman O, Moosa Basem, Maltseva Elizaveta, Khashab Niveen M
Smart Hybrid Materials (SHMs) Laboratory, Advanced Membranes and Porous Materials, Center, Physical Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.
Angew Chem Int Ed Engl. 2025 Jan 21;64(4):e202416050. doi: 10.1002/anie.202416050. Epub 2024 Nov 13.
Efficient incorporation of macrocycles in polymeric membranes can impart the overall matrix with new properties for a range of cutting-edge applications. Here, we introduce a Supramolecular Interfacial Assembly (SIA) method for the fabrication of polymeric membranes featuring embedded macrocycles. Through harnessing the quasi-liquid nature of the concentrated polymer solution, SIA orchestrates the homogeneous spreading of macrocycles in an aqueous layer on its surface, leading to the creation of an interface between "water/water" phases, subsequently forming a cross-linked membrane driven by supramolecular electrostatic interactions. Remarkably, compared to the traditional interfacial polymerization, SIA adheres to a "green" paradigm without the need for organic solvents. The resultant composite membrane exhibits superior performance in organic solvent nanofiltration (OSN), owing to the precise molecular sieving property provided by the macrocycles with well-defined permanent cavities. This fabrication method holds great promise for the innovative design and production of composite membranes that seamlessly integrates macrocycles with conventional polymers, which can greatly impact the design and preparation of advanced membrane materials in the future.
在聚合物膜中高效引入大环化合物可为整个基体赋予一系列前沿应用所需的新特性。在此,我们介绍一种用于制备含有嵌入大环化合物的聚合物膜的超分子界面组装(SIA)方法。通过利用浓聚合物溶液的准液体性质,SIA使大环化合物在其表面的水层中均匀铺展,从而形成“水/水”相之间的界面,随后通过超分子静电相互作用形成交联膜。值得注意的是,与传统界面聚合相比,SIA遵循“绿色”模式,无需有机溶剂。所得复合膜在有机溶剂纳滤(OSN)中表现出优异性能,这归因于具有明确永久空腔的大环化合物所提供的精确分子筛分特性。这种制备方法对于将大环化合物与传统聚合物无缝整合的复合膜的创新设计和生产具有巨大潜力,这可能会对未来先进膜材料的设计和制备产生重大影响。