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Facile Covalent Crosslinking of Zeolitic Imidazolate Framework/Polydimethylsiloxane Mixed Matrix Membrane for Enhanced Ethanol/Water Separation Performance

机译:沸石咪唑酯骨架/聚二甲基硅氧烷混合基质膜的体内共价交联用于增强乙醇/水分离性能

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摘要

The interfacial design is critical in preparing high-performance mixed matrix membranes (MMMs), especially for the separation of larger sized components from mixtures. Herein, a facile and novel strategy was employed to design covalently linked zeolitic imidazolate framework-8-polydimethylsiloxane (ZIF-8@PDMS) MMMs without interfacial defects by a onestep synthesis route for ethanol recovery from ethanol aqueous solution. In this strategy, 3-glycidyloxypropyltrimethoxysilane (GOPTS) worked as the covalent linker of PDMS and amine-functionalized ZIF-8 nanoparticles (AZIF-8) simultaneously. The chemical structures and morphologies of AZIF-8 and AZIF-8@PDMS MMMs were demonstrated by various characterization techniques. The results exhibited that AZIF-8 and the MMMs were successfully prepared and AZIF-8 as the filler displayed better dispersion in the PDMS matrix and compatibility with the PDMS matrix as compared to ZIF-8 or GOPTS-modified ZIF-8 (GZIF-8). Therefore, AZIF-8@PDMS MMMs showed more excellent separation performance than ZIF-8 or GZIF-8-filled MMMs. In particular, AZIF-8@PDMS MMM with 7 wt % AZIF-8 loading exhibited the highest separation factor of 17.7 and a comparable total flux of 585.6 g/m(2) h at 40 degrees C with 5 wt % ethanol aqueous solution, which were improved by 176.6 and 34.5%, respectively, in comparison with the pristine PDMS membrane, breaking the "trade-off" effect between the flux and separation factor. This study might provide some new insights into the fabrication of high-performance MMMs for pervaporation recovery of various organic systems.
机译:界面设计对于制备高性能混合基质膜(MMMS)至关重要,特别是对于从混合物中分离较大尺寸的组分。在此,使用容易和新的策略来设计共价连接的沸石咪唑酯骨架-8-聚二甲基硅氧烷(ZIF-8 @ PDMS)MMM,而不会通过乙醇水溶液的乙醇回收的乙醇的合成途径进行界面缺陷。在该策略中,3-丙酸氧基丙基三甲氧基硅烷(GOPT)同时用作PDMS和胺官能化ZIF-8纳米颗粒(AZIF-8)的共价接头。通过各种表征技术证明了AZIF-8和AZIF-8 @ PDMS MMM的化学结构和形态。结果表明,与ZIF-8或GOPTS改性的ZIF-8相比,成功制备了AzIF-8和MMMS以PDMS矩阵的更好分散,与PDMS基质相容,与PDMS矩阵相容(GZIF-8 )。因此,AZIF-8 @ PDMS MMM比ZIF-8或GZIF-8填充的MMM表示更优异的分离性能。特别地,具有7wt%的AzIF-8负载的AzIF-8 @ PDMSmmm具有17.7的最高分离因子,并且在40℃下的585.6g / m(2)小时的比例总通量为40℃,具有5wt%的乙醇水溶液,与原始PDMS膜相比,这分别提高了176.6和34.5%,在助焊剂和分离因子之间断开“权衡”效应。本研究可能对高性能MMM的制造提供一些新的见解,以进行各种有机系统的普遍恢复。

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