化学
单体
聚合
膜
制作
高分子化学
界面聚合
星团(航天器)
金属有机骨架
化学工程
纳米技术
聚合物
有机化学
吸附
医学
生物化学
替代医学
病理
计算机科学
工程类
程序设计语言
材料科学
作者
Yang Feng,Zixi Kang,Zhikun Wang,Zhanning Liu,Qingshan Niu,Weidong Fan,Lu Qiao,Jia Pang,Changzheng Hu,Xiaolei Cui,Lili Fan,Hailing Guo,Rongming Wang,Dan Zhao,Daofeng Sun
摘要
Current research on emergent membrane materials with ordered and stable nanoporous structures often overlooks the vital facet of manufacturing scalability. We propose the preprocessed monomer interfacial polymerization (PMIP) strategy for the scalable fabrication of high-valent cluster-based metal-organic framework (MOF) membranes with robust structures. Using a roll-to-roll device on commercial polymer supports, Zr-fum-MOF membranes are continuously processed at room temperature through the PMIP approach. These large-area membranes demonstrate the preeminent hydrogen separation capabilities, boasting an order of magnitude of permeance and a thrice-enhanced selectivity when juxtaposed with conventional polymeric membranes. The obtained PMIP-Zr-fum-MOF membranes possess superior stability in water compared with interfacial polymerization (IP)-processed low-valent metal-ion-based ZIF-8 membranes. Moreover, we have implemented the PMIP strategy's universality to process the other four diverse MOF membranes. The proposal of PMIP significantly advances the scalable fabrication of water-stable high-valent cluster MOF membranes.
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