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GO-guided direct growth of highly oriented metal–organic framework nanosheet membranes for H2/CO2 separation

机译:GO引导的高定向金属-有机骨架纳米片膜的直接生长用于H2 / CO2分离

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摘要

Highly oriented, ultrathin metal–organic framework (MOF) membranes are attractive for practical separation applications, but the scalable preparation of such membranes especially on standard tubular supports remains a huge challenge. Here we report a novel bottom-up strategy for directly growing a highly oriented Zn2(bIm)4 (bIm = benzimidazole) ZIF nanosheet tubular membrane, based on graphene oxide (GO) guided self-conversion of ZnO nanoparticles (NPs). Through our approach, a thin layer of ZnO NPs confined between a substrate and a GO ultrathin layer self-converts into a highly oriented Zn2(bIm)4 nanosheet membrane. The resulting membrane with a thickness of around 200 nm demonstrates excellent H2/CO2 gas separation performance with a H2 performance of 1.4 × 10–7 mol m–2 s–1 Pa–1 and an ideal separation selectivity of about 106. The method can be easily scaled up and extended to the synthesis of other types of Zn-based MOF nanosheet membranes. Importantly, our strategy is particularly suitable for the large-scale fabrication of tubular MOF membranes that has not been possible through other methods.
机译:高取向,超薄的金属有机骨架(MOF)膜对实际分离应用很有吸引力,但是这类膜的可扩展制备,尤其是在标准管状支撑物上,仍是巨大的挑战。在这里,我们报告了一种新的自下而上的策略,该方法基于氧化石墨烯(GO)引导的ZnO纳米粒子(NP)的自转化,直接生长高度取向的Zn2(bIm)4(bIm =苯并咪唑)ZIF纳米片管状膜。通过我们的方法,限制在基板和GO超薄层之间的ZnO NP薄层会自转化为高度取向的Zn2(bIm)4纳米片状膜。所得的厚度约为200 nm的膜表现出出色的H2 / CO2气体分离性能,H2性能为1.4×10 –7 mol m –2 s –1 Pa –1 和理想的分离选择性约为106。该方法可以轻松扩展规模,并扩展到其他类型的Zn基MOF纳米片膜的合成。重要的是,我们的策略特别适用于管状MOF膜的大规模制造,而这是其他方法无法实现的。

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