Suppr超能文献

一种具有预固定化UiO-66-NH的薄膜纳米复合膜,用于增强纳滤性能。

A thin film nanocomposite membrane with pre-immobilized UiO-66-NH toward enhanced nanofiltration performance.

作者信息

Zhang Xu, Zhang Yufan, Wang Tiecheng, Fan Zheng, Zhang Guoliang

机构信息

Institute of Oceanic and Environmental Chemical Engineering, State Key Lab Breeding Base of Green Chemical Synthesis Technology, Zhejiang University of Technology Chaowang Road 18# 310014 Hangzhou P. R. China

Department of Mechanical Engineering, College of Engineering, Carnegie Mellon University Pittsburgh PA 15213 USA.

出版信息

RSC Adv. 2019 Aug 9;9(43):24802-24810. doi: 10.1039/c9ra04714j. eCollection 2019 Aug 8.

Abstract

A facile controlled interfacial polymerization strategy was proposed for the synthesis of novel thin film nanocomposite (TFN) membranes for enhanced nanofiltration performance. UiO-66 nanoparticles were aminated and pre-immobilized onto a polymer substrate polydopamine (PDA) coating to achieve a continuous and defect-free polyamide dense layer. The mediation of the PDA coating could not only enhance the structural stability of TFN nanofiltration membranes, but also improve the dispersion and anchorage of UiO-66-NH, thus closely fixing the position of UiO-66-NH nanoparticles on the polymer substrate. Moreover, since the amino group (-NH) further reacted with PDA Michael addition or Schiff base reaction, the mutual reaction reduced the nanoparticle losses significantly during the draining off of the monomer solution in the fabrication process, which effectively cut down the actual dosage. The results showed that the PDA interlayer could induce the tight attachment of the PA layer to the support, enhancing the structural stability of TFN membranes. Furthermore, the dosage of UiO-66-NH in the as-prepared TFN membranes could also be decreased to as low as 0.01 w/v%, which was nearly a 10-20-fold reduction in the required amount of UiO-66-NH for the synthesis. The fabricated TFN/UiO-66-NH membranes exhibited very high water permeance and competitive salt rejections in cross-flow nanofiltration, which shows the huge potential for the application of novel TFN membranes with controlled nanoparticle incorporation in industrial separation.

摘要

提出了一种简便的可控界面聚合策略,用于合成具有增强纳滤性能的新型薄膜纳米复合(TFN)膜。对UiO-66纳米颗粒进行胺化处理,并预先固定在聚多巴胺(PDA)涂层的聚合物基底上,以获得连续且无缺陷的聚酰胺致密层。PDA涂层的介导作用不仅可以增强TFN纳滤膜的结构稳定性,还能改善UiO-66-NH的分散性和锚固作用,从而将UiO-66-NH纳米颗粒紧密固定在聚合物基底上。此外,由于氨基(-NH)通过迈克尔加成反应或席夫碱反应与PDA进一步反应,这种相互反应在制备过程中单体溶液排出时显著减少了纳米颗粒的损失,有效降低了实际用量。结果表明,PDA中间层可诱导PA层与支撑体紧密附着,增强TFN膜的结构稳定性。此外,在制备的TFN膜中,UiO-66-NH的用量也可降低至0.01 w/v%,这几乎是合成所需UiO-66-NH量的10至20倍的减少。制备的TFN/UiO-66-NH膜在错流纳滤中表现出非常高的水通量和具有竞争力的盐截留率,这表明在工业分离中应用具有可控纳米颗粒掺入的新型TFN膜具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e00d/9069876/13c021be5652/c9ra04714j-f1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验