Elevated Performance of Thin Film Nanocomposite Membranes Enabled by Modified Hydrophilic MOFs for Nanofiltration

界面聚合 材料科学 纳米复合材料 纳滤 聚酰胺 化学工程 薄膜复合膜 纳米颗粒 表面改性 吸附 X射线光电子能谱 聚合物 单体 高分子化学 纳米技术 有机化学 复合材料 化学 反渗透 工程类 生物化学
作者
Junyong Zhu,Lijuan Qin,Adam Uliana,Jingwei Hou,Jing Wang,Yatao Zhang,Xin Li,Shushan Yuan,Jian Li,Miaomiao Tian,Jiuyang Lin,Bart Van der Bruggen
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:9 (2): 1975-1986 被引量:451
标识
DOI:10.1021/acsami.6b14412
摘要

Metal-organic frameworks (MOFs) are studied for the design of advanced nanocomposite membranes, primarily due to their ultrahigh surface area, regular and highly tunable pore structures, and favorable polymer affinity. However, the development of engineered MOF-based membranes for water treatment lags behind. Here, thin-film nanocomposite (TFN) membranes containing poly(sodium 4-styrenesulfonate) (PSS) modified ZIF-8 (mZIF) in a polyamide (PA) layer were constructed via a facile interfacial polymerization (IP) method. The modified hydrophilic mZIF nanoparticles were evenly dispersed into an aqueous solution comprising piperazine (PIP) monomers, followed by polymerizing with trimesoyl chloride (TMC) to form a composite PA film. FT-IR spectroscopy and XPS analyses confirm the presence of mZIF nanoparticles on the top layer of the membranes. SEM and AFM images evince a retiform morphology of the TFN-mZIF membrane surface, which is intimately linked to the hydrophilicity and adsorption capacity of mZIF nanoparticles. Furthermore, the effect of different ZIF-8 loadings on the overall membrane performance was studied. Introducing the hydrophilizing mZIF nanoparticles not only furnishes the PA layer with a better surface hydrophilicity and more negative charge but also more than doubles the original water permeability, while maintaining a high retention of Na2SO4. The ultrahigh retentions of reactive dyes (e.g., reactive black 5 and reactive blue 2, >99.0%) for mZIF-functionalized PA membranes ensure their superior nanofiltration performance. This facile, cost-effective strategy will provide a useful guideline to integrate with other modified hydrophilic MOFs to design nanofiltration for water treatment.
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