渗透
微型多孔材料
纳滤
膜
化学工程
单体
材料科学
聚合物
选择性
气体分离
溶剂
聚酯纤维
高分子化学
纳米技术
化学
有机化学
复合材料
生物化学
工程类
催化作用
渗透
作者
Shao‐Lu Li,Guoliang Chang,Yangzheng Huang,Ken Kinooka,Yanting Chen,Wenming Fu,Genghao Gong,Tomohisa Yoshioka,Neil B. McKeown,Yunxia Hu
标识
DOI:10.1002/anie.202212816
摘要
Abstract Organic solvent nanofiltration (OSN) is an emerging membrane separation technology, which urgently requires robust, easily processed, OSN membranes possessing high permeance and small solutes‐selectivity to facilitate enhanced industrial uptake. Herein, we describe the use of two 2,2′‐biphenol (BIPOL) derivatives to fabricate hyper‐crosslinked, microporous polymer nanofilms through IP. Ultra‐thin, defect‐free polyesteramide/polyester nanofilms (≈5 nm) could be obtained readily due to the relatively large molecular size and ionized nature of the BIPOL monomers retarding the rate of the IP. The enhanced microporosity arises from the hyper‐crosslinked network structure and monomer rigidity. Specifically, the amino‐BIPOL/PAN membrane exhibits extraordinary permselectivity performances with molecular weight cut‐off as low as 233 Da and MeOH permeance of ≈13 LMH/bar. Precise separation of small dye mixtures with similar M.W. based on both their charge and molecular size are achieved.
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