纳滤
渗透
聚酰胺
膜
界面聚合
溶剂
化学工程
单体
二氯甲烷
材料科学
相(物质)
高分子化学
聚合
极地的
聚合物
化学
有机化学
复合材料
渗透
生物化学
物理
天文
工程类
作者
Li Wang,Huimin He,Qimao Gan,Hao Guo,Zhe Yang,Lizhi Xu,Chuyang Y. Tang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-06-07
卷期号:24 (24): 7373-7380
被引量:1
标识
DOI:10.1021/acs.nanolett.4c01512
摘要
Nanofiltration membranes with both high water permeance and selectivity are perpetually studied because of their applications in water purification. However, these two critical attributes are considered to be mutually exclusive. Here, we introduce a polar solvent, dichloromethane, in place of the apolar hexane used for decades as the organic phase for membrane interfacial polymerization synthesis to solve this dilemma. When a polar solvent as the organic phase is combined with a solvent-resistant aramid nanofibrous hydrogel film as the water phase, monomer enrichment in the reaction zone leads to a polyamide nanofiltration membrane with densely distributed nanobubble features, enhanced nanoporosity, and a loosened backbone. Benefiting from these structural features, the resulting membrane exhibits superior properties with a combination of high water permeance (52.7 L m–2 h–1 bar–1) and selectivity (water/Na2SO4, 36 bar–1; NaCl/Na2SO4, 357 bar–1), outperforming traditional nanofiltration membranes. We envision that this novel technology involving polar solvent systems and the water phase of nanofibrous hydrogel would provide new opportunities for membrane development for environmental engineering.
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