Department of Chemistry and Materials Innovation Factory, University of Liverpool, Liverpool, UK.
Department of Chemical Engineering, Imperial College London, South Kensington, London, UK.
Nat Mater. 2022 Apr;21(4):463-470. doi: 10.1038/s41563-021-01168-z. Epub 2022 Jan 10.
Membranes with high selectivity offer an attractive route to molecular separations, where technologies such as distillation and chromatography are energy intensive. However, it remains challenging to fine tune the structure and porosity in membranes, particularly to separate molecules of similar size. Here, we report a process for producing composite membranes that comprise crystalline porous organic cage films fabricated by interfacial synthesis on a polyacrylonitrile support. These membranes exhibit ultrafast solvent permeance and high rejection of organic dyes with molecular weights over 600 g mol. The crystalline cage film is dynamic, and its pore aperture can be switched in methanol to generate larger pores that provide increased methanol permeance and higher molecular weight cut-offs (1,400 g mol). By varying the water/methanol ratio, the film can be switched between two phases that have different selectivities, such that a single, 'smart' crystalline membrane can perform graded molecular sieving. We exemplify this by separating three organic dyes in a single-stage, single-membrane process.
具有高选择性的膜为分子分离提供了一条有吸引力的途径,而蒸馏和色谱等技术则需要大量的能量。然而,精细调整膜的结构和孔隙率仍然具有挑战性,特别是要分离大小相似的分子。在这里,我们报告了一种生产复合膜的方法,该复合膜由在聚丙烯腈支撑体上通过界面合成制备的结晶多孔有机笼膜组成。这些膜表现出超快的溶剂透过率和对分子量超过 600 g/mol 的有机染料的高截留率。结晶笼膜是动态的,其孔径可以在甲醇中切换,生成更大的孔,从而提供更高的甲醇透过率和更高的分子量截止值(1400 g/mol)。通过改变水/甲醇的比例,该膜可以在具有不同选择性的两相之间切换,使得单个“智能”结晶膜可以进行分级分子筛。我们通过在单级单膜过程中分离三种有机染料来说明这一点。