Alkali-assisted metal-phenolic network assembly for structural regulation of nanofiltration membranes

Zhengzhong Zhou, Zihan Rui, Ying Nan Feng, Qian Wang*, Tian Dan Lu*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Metal-phenolic networks (MPNs) have been widely used in the preparation and modification of nanofiltration (NF) membranes due to their rapid reaction, good film-forming ability, and excellent hydrophilicity. Nevertheless, NF membranes incorporating MPN selective layers often suffer from reduced rejection performance, owing to the challenge of controlling the selective layer's porous architecture during synthesis, which restricts their separation efficacy of small organic compounds. In this study, the substrates were pretreated with a NaOH solution prior to the coordination synthesis of the Fe-tannic acid (Fe-TA) selective layer to achieve three key objectives: Firstly, the application of NaOH facilitates the enrichment of Fe3+ on the membrane surface in the form of Fe(OH)3. Secondly, this process allows for the gradual release of Fe3+, as it reacts with TA, thereby enabling a controlled coordination reaction that forms the Fe-TA network. Finally, the presence of OH helps to maintain an alkaline environment throughout the reaction, enhancing the crosslinking degree of the MPN network. Compared to conventional Fe-TA NF membranes, the Fe-TA membrane pretreated with NaOH solution (pH = 10) exhibited a reduction in average pore size from 0.91 nm to 0.66 nm, and an increase in Na2SO4 rejection from 87.6 % to 96.6 %. Moreover, the Fe-TA membrane demonstrated enhanced rejection performance for various dyes, notably achieving a rise in the rejection rate for metanil yellow from 94.6 % to 99.4 %. This study not only provides alternative for the fabrication of high-performance non-polyamide NF membranes, but also introduces a new strategy for regulating MPN structures.

源语言英语
文章编号123771
期刊Journal of Membrane Science
720
DOI
出版状态已出版 - 3月 2025

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引用此

Zhou, Z., Rui, Z., Feng, Y. N., Wang, Q., & Lu, T. D. (2025). Alkali-assisted metal-phenolic network assembly for structural regulation of nanofiltration membranes. Journal of Membrane Science, 720, 文章 123771. https://doi.org/10.1016/j.memsci.2025.123771