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Pressure-Assisted Synthesis of HKUST-1 Thin Film on Polymer Hollow Fiber at Room Temperature toward Gas Separation

机译:室温下压力辅助在聚合物中空纤维上合成HKUST-1薄膜以实现气体分离

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摘要

The scalable fabrication of continuous and defect-free metal-organic framework (MOF) films on the surface of polymeric hollow fibers, departing from ceramic supported or dense composite membranes, is a huge challenge. The critical way is to reduce the growth temperature of MOFs in aqueous or ethanol solvents. In the present work, a pressure-assisted room temperature growth strategy was carried out to fabricate continuous and well-intergrown HKUST-1 films on a polymer hollow fiber by using solid copper hydroxide nanostrands as the copper source within 40 min. These HKUST-1 films/polyvinylidenefluoride (PVDF) hollow fiber composite membranes exhibit good separation performance for binary gases with selectivity 116% higher than Knudsen values via both inside-out and outside-in modes. This provides a new way to enable for scale-up preparation of HKUST-1/polymer hollow fiber membranes, due to its superior economic and ecological advantages.
机译:在聚合物中空纤维表面上连续且无缺陷的金属有机骨架(MOF)膜的可伸缩制造,而不是陶瓷支撑或致密的复合膜,是一个巨大的挑战。关键方法是降低MOF在水性或乙醇溶剂中的生长温度。在目前的工作中,通过在40分钟内使用固态氢氧化铜纳米链作为铜源,进行了压力辅助的室温生长策略,以在聚合物中空纤维上制备连续且互溶的HKUST-1薄膜。这些HKUST-1膜/聚偏二氟乙烯(PVDF)中空纤维复合膜通过内-外和外-内模式对二元气体表现出良好的分离性能,选择性比Knudsen值高116%。由于HKUST-1 /聚合物中空纤维膜的优越的经济和生态优势,这为扩大规模制备HKUST-1 /聚合物中空纤维膜提供了新的途径。

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