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掺杂石墨烯量子点的薄膜纳米复合聚酰亚胺膜,具有增强的耐溶剂性,用于耐溶剂纳滤。

Graphene Quantum Dots-Doped Thin Film Nanocomposite Polyimide Membranes with Enhanced Solvent Resistance for Solvent-Resistant Nanofiltration.

机构信息

Key Laboratory of Marine Chemistry Theory and Technology , Ocean University of China, Ministry of Education , Qingdao 266100 , China.

Department of Chemical Engineering , Indian Institute of Technology Guwahati , Guwahati 781039 , India.

出版信息

ACS Appl Mater Interfaces. 2019 Feb 13;11(6):6527-6540. doi: 10.1021/acsami.8b19834. Epub 2019 Jan 29.

Abstract

The core of the organic solvent nanofiltration (OSN) technology is solvent-resistant nanofiltration (SRNF) membranes. Till now, relative poor performance of solvent resistance is still the bottleneck of industrial application of SRNF membranes. This work reports a novel polyimide (PI)-based thin-film nanocomposite (TFN) membrane which was embedded with graphene quantum dots (GQDs) and showed an improved solvent resistance for OSN application. This kind of SRNF membrane, termed (PI-GQDs/PI), was synthesized via serial processes of interfacial polymerization (IP), imidization, cross-linking, and solvent activation. The IP process was performed between an aqueous m-phenylenediamine solution doped with GQDs, having an average size of 1.9 nm, and an 1,2,4,5-benzenetetracarboxylic acyl chloride n-hexane solution on the PI substrate surface. The prepared (PI-GQDs-50/PI) SRNF membranes without organic solvent activation achieved an ethanol permeance of nearly 50% higher than those of the GQD-free membranes under the same preparation conditions, while no compromise of the dye rejection was observed. Further, after the solvent activation using N, N-dimethylformamide (DMF) at 80 °C for 30 min, the ethanol permeance achieved about an 8-folds increment, from 2.84 to 22.6 L m h MPa. Interestingly, the rejection of rhodamine B also increased from 97.8 to 98.6%. A long-term permeation test of more than 100 h using rose bengal (RB, 1017 Da)/DMF solution at room temperature demonstrated that the synthesized (PI-GQDs-50/PI) membranes could maintain the DMF permeance and the RB rejection as high as 18.3 L m h MPa and 99.9%, respectively. Moreover, the immersion test of the prepared (PI-GQDs-50/PI) SRNF membranes in both DMF and ethanol at room temperature for about one year also demonstrated the long-term organic solvent stability, indicating their good potential for OSN application.

摘要

有机溶剂纳滤(OSN)技术的核心是耐溶剂纳滤(SRNF)膜。到目前为止,相对较差的耐溶剂性能仍然是 SRNF 膜工业应用的瓶颈。本工作报道了一种新型聚酰亚胺(PI)基薄膜纳米复合材料(TFN)膜,其中嵌入了石墨烯量子点(GQDs),并表现出改善的 OSN 应用溶剂阻力。这种 SRNF 膜,称为(PI-GQDs/PI),是通过界面聚合(IP)、酰亚胺化、交联和溶剂活化的连续过程合成的。IP 过程是在含有 GQDs 的间苯二胺水溶液和 1,2,4,5-苯四羧酸酰氯正己烷溶液之间在 PI 基底表面上进行的,GQDs 的平均尺寸为 1.9nm。在没有有机溶剂活化的情况下,制备的(PI-GQDs-50/PI)SRNF 膜在相同的制备条件下,乙醇渗透率比不含 GQD 的膜高近 50%,而染料截留率没有降低。此外,在用 N,N-二甲基甲酰胺(DMF)在 80°C 下活化 30 分钟后,乙醇渗透率达到约 8 倍的增加,从 2.84 增加到 22.6Lm h MPa。有趣的是,罗丹明 B 的截留率也从 97.8%增加到 98.6%。在室温下使用孟加拉玫瑰红(RB,1017Da)/DMF 溶液进行超过 100 小时的长期渗透测试表明,合成的(PI-GQDs-50/PI)膜可以保持 DMF 渗透率和 RB 截留率高达 18.3Lm h MPa 和 99.9%。此外,将制备的(PI-GQDs-50/PI)SRNF 膜在室温下分别浸入 DMF 和乙醇中约一年的浸泡试验也证明了其长期有机溶剂稳定性,表明其在 OSN 应用中的良好潜力。

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