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首页> 外文期刊>ACS applied materials & interfaces >Mixed-Matrix Membranes with Metal-Organic Framework-Decorated CNT Fillers for Efficient CO2 Separation
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Mixed-Matrix Membranes with Metal-Organic Framework-Decorated CNT Fillers for Efficient CO2 Separation

机译:带有金属有机骨架装饰的CNT填料的混合基质膜,可有效分离CO2

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摘要

Carbon nanotube (CNT) mixed-matrix membranes (MMMs) show great potential to achieve superior gas permeance because of the unique structure of CNTs. However, the challenges of CNT dispersion in polymer matrix and elimination of interfacial defects are still hindering MMMs to be prepared for high gas selectivity. A novel CNT/metal-organic framework (MOF) composite derived from the growth of NH2-MIL-101(Al) On the surface of CNTs have been synthesized and applied to fabricate polyimide-based MMMs. Extra amino groups and active sites were introduced to external surface of CNTs after MOF decoration. The good adhesion between the synthesized CNT-MIL fillers and polymer phase was observed, even at a high filler loadings up to 15%. Consequently, MMMs containing the synthesized MOF/CNT composite exhibit not only a large CO2 permeability but also a high CO2/CH4 selectivity; the combined performance of permeability and selectivity is even above the Robeson upper bound. The strategy of growing MOFs on CNTs can be further utilized to develop a more effective approach to further in-Trove MMM performance through the decoration of MOFs on existing fillers that have high selectivity to specific gas.
机译:碳纳米管(CNT)混合基质膜(MMM)由于具有独特的CNT结构,具有巨大的潜力,可实现出色的透气性。然而,CNT在聚合物基质中分散的挑战以及界面缺陷的消除仍然阻碍着为高气体选择性制备MMM。合成了一种新型的CNT /金属有机骨架(MOF)复合材料,该复合材料是由NH2-MIL-101(Al)在CNT表面上的生长衍生而来的,并已用于制造基于聚酰亚胺的MMM。 MOF装饰后,多余的氨基和活性位点被引入到CNT的外表面。即使在高达15%的高填充量下,也可以观察到合成的CNT-MIL填料与聚合物相之间的良好粘合性。因此,含有合成的MOF / CNT复合物的MMM不仅表现出大的CO 2渗透性,而且表现出高的CO 2 / CH 4选择性。渗透率和选择性的综合性能甚至高于Robeson上限。通过在具有特定气体选择性的现有填料上装饰MOF,可以进一步利用在CNT上生长MOF的策略来开发更有效的方法,以进一步提高MMM性能。

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