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Biomimetic Liquid-Sieving through Covalent Molecular Meshes

机译:通过共价分子筛进行仿生液体筛分

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摘要

The porin pores of biological cell membranes enable molecules to be sieved out selectively while water molecules traverse the channel in a single file. Imitating this streaming mechanism is a promising way to create artificial liquid-sieving membranes, but ultrathin molecular pores need to be produced in a large membrane format to be functional under high transmembrane pressures. Here we show that a membrane composed of a covalent molecular mesh can filter mixtures of small molecules in a liquid by the porin-like mechanism. Tetrahedral network formers are polymerized layer-by-layer on a nanoporous substrate to yield a thin layer of a covalent molecular network containing an array of molecular meshes grown by a pore-limited mechanism. Each of the meshes exhibits high water permeability, estimated to be greater than 2500 Lm(-2) h(-1). Glucose or larger molecules are selectively sieved out while the solvent and solutes smaller than glucose traverse the mesh.
机译:生物细胞膜的孔可以使分子被选择性地筛分,而水分子则在单个文件中穿越通道。模仿这种流动机制是制造人造液体筛分膜的一种有前途的方法,但是超薄分子孔需要以大的膜形式生产才能在高跨膜压力下发挥作用。在这里,我们表明,由共价分子网构成的膜可以通过类孔蛋白机制过滤液体中的小分子混合物。四面体网络形成剂在纳米孔基质上逐层聚合,以产生共价分子网络的薄层,该共价分子网络包含通过孔受限机制生长的分子网阵列。每个网格都表现出很高的水渗透性,估计大于2500 Lm(-2)h(-1)。选择性地筛分葡萄糖或较大分子,而小于葡萄糖的溶剂和溶质穿过筛孔。

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