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超薄金属有机框架纳米片用作柔性复合气体分离膜的排水沟层。

Ultrathin Metal-Organic Framework Nanosheets as a Gutter Layer for Flexible Composite Gas Separation Membranes.

作者信息

Liu Min, Xie Ke, Nothling Mitchell D, Gurr Paul Andrew, Tan Shereen Siew Ling, Fu Qiang, Webley Paul A, Qiao Greg G

机构信息

Department of Chemical Engineering , The University of Melbourne , Parkville , Victoria 3010 , Australia.

出版信息

ACS Nano. 2018 Nov 27;12(11):11591-11599. doi: 10.1021/acsnano.8b06811. Epub 2018 Nov 1.

Abstract

Ultrathin metal-organic framework (MOF) nanosheets show great potential in various separation applications. In this study, MOF nanosheets are incorporated as a gutter layer in high-performance, flexible thin-film composite membranes (TFCMs) for CO separation. Ultrathin MOF nanosheets (∼3-4 nm) were prepared via a surfactant-assisted method and subsequently coated onto a flexible porous support by vacuum filtration. This produced an ultrathin (∼25 nm), extremely flat MOF layer, which serves as a highly permeable gutter with reduced gas resistance when compared with conventional polydimethylsiloxane gutter layers. Subsequent spin-coating of the ultrathin MOF gutter layer with a polymeric selective layer (Polyactive) afforded a TFCM exhibiting the best CO separation performance yet reported for a flexible composite membrane (CO permeance of ∼2100 GPU with a CO/N ideal selectivity of ∼30). Several unique MOF nanosheets were examined as gutter layers, each differing with regard to structure and thickness (∼10 and ∼80 nm), with results indicating that flexibility in the ultrathin MOF layer is critical for optimized membrane performance. The inclusion of ultrathin MOF nanosheets into next-generation TFCMs has the potential for major improvements in gas separation performance over current composite membrane designs.

摘要

超薄金属有机框架(MOF)纳米片在各种分离应用中显示出巨大潜力。在本研究中,MOF纳米片被用作高性能柔性薄膜复合膜(TFCM)中的排水层用于CO分离。通过表面活性剂辅助法制备了超薄MOF纳米片(约3 - 4纳米),随后通过真空过滤将其涂覆在柔性多孔支撑体上。这产生了一个超薄(约25纳米)、极其平整的MOF层,与传统的聚二甲基硅氧烷排水层相比,它作为一个高渗透性的排水层,具有降低的气体阻力。随后用聚合物选择层(Polyactive)对超薄MOF排水层进行旋涂,得到了一种TFCM,其表现出了迄今为止报道的柔性复合膜中最佳的CO分离性能(CO渗透率约为2100 GPU,CO/N理想选择性约为30)。研究了几种独特的MOF纳米片作为排水层,每种在结构和厚度(约10纳米和约80纳米)方面都有所不同,结果表明超薄MOF层的柔韧性对于优化膜性能至关重要。将超薄MOF纳米片纳入下一代TFCM有可能比当前的复合膜设计在气体分离性能上有重大改进。

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