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基于 Donnan 效应的共价有机框架膜在基于尺寸和电荷的精确分子筛分中的应用。

Donnan Effect-Engineered Covalent Organic Framework Membranes toward Size- and Charge-Based Precise Molecular Sieving.

机构信息

State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute of Sichuan University, Chengdu 610065, Sichuan, China.

PetroChina Liaoyang Petrochemical Company, No. 7 Torch Street, Hongwei District, Liaoyang 111000, Liaoning, China.

出版信息

ACS Appl Mater Interfaces. 2023 Apr 12;15(14):18550-18558. doi: 10.1021/acsami.3c02556. Epub 2023 Apr 3.

DOI:10.1021/acsami.3c02556
PMID:37010144
Abstract

Covalent organic frameworks (COFs), with ordered pores and well-defined topology, are ideal materials for nanofiltration (NF) membranes because of their capacity of transcending the permeance/selectivity trade-off predicament. However, most reported COF-based membranes are focused on separating molecules with different sizes, resulting in low selectivity to similar molecules with different charges. Here, the negatively charged COF layer was fabricated in situ on a microporous support for the separation of molecules with different sizes and charges. Ultrahigh water permeance (216.56 L m h bar) was obtained because of the ordered pores and excellent hydrophilicity, which exceeds that of most membranes with similar rejections. For the first time, we used multifarious dyes with different sizes and charges, for the investigation of the selectivity behavior caused by the Donnan effect and size exclusion. The obtained membranes represent superior rejections to negatively and neutrally charged dyes larger than 1.3 nm, while positively charged dyes with a size of 1.6 nm can pass through the membrane, resulting in the separation of negative/positive mixed dyes with similar molecular sizes. This strategy of combining the Donnan effect and size exclusion in nanoporous materials may evolve into a generic platform for sophisticated separation.

摘要

共价有机框架(COFs)具有有序的孔道和明确的拓扑结构,由于其能够超越渗透率/选择性权衡困境,是纳滤(NF)膜的理想材料。然而,大多数报道的基于 COF 的膜主要集中在分离具有不同尺寸的分子上,导致对具有不同电荷的相似分子的选择性较低。在这里,带负电荷的 COF 层被原位制备在微孔支撑体上,用于分离具有不同尺寸和电荷的分子。由于有序的孔道和优异的亲水性,获得了超高的水渗透通量(216.56 L m h bar),超过了大多数具有类似截留率的膜。我们首次使用具有不同尺寸和电荷的多种染料,研究了 Donnan 效应和尺寸排阻引起的选择性行为。所得到的膜对大于 1.3nm 的带负电荷和中性染料具有优异的截留率,而尺寸为 1.6nm 的带正电荷染料可以通过膜,从而实现具有相似分子尺寸的负/正混合染料的分离。这种在纳米多孔材料中结合 Donnan 效应和尺寸排阻的策略可能发展成为一种用于复杂分离的通用平台。

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