纳滤
聚酰胺
葫芦素
膜
界面聚合
化学
溶剂
选择性
化学工程
分子
高分子化学
单体
哌嗪
有机化学
聚合物
超分子化学
工程类
生物化学
催化作用
作者
Xue‐Li Cao,Jialin Guo,Jing Cai,Mei‐Ling Liu,Susilo Japip,Weihong Xing,Shi‐Peng Sun
摘要
Abstract The considerable performance enhancement of small molecule‐sieving nanofiltration membrane has been achieved by the functional combination between host–guest chemistry and interfacial polymerization (IP) for the first time in this work. First, the water‐insolubility of cucurbit[6]uril (CB6) was ameliorated by constructing host–guest complex (CB6‐PIP) with piperazine. Second, the incorporation of water‐soluble CB6‐PIP in the selective layer via IP leads to the generation of not only the enlarged conventional polyamide network tunnels but also rotaxane tunnels. Such enrichment of solvent transport tunnels contributes to an amazing pure water permeability of 15.5–25.4 Lm −2 bar −1 h −1 , three times higher than that of traditional polyamide membranes, with a high R/MgSO 4 of 99.5–92.5%, perfect SO 4 2− /Cl − selectivity due to the electronegative contribution of CB6, as well as untapped potential in organic solvent nanofiltration. This work not only provides a fire‐new strategy to design new type of NF materials but also promotes the application of CBs in many other fields.
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