Eum Kiwon, Yang Shaowei, Min Byunghyun, Ma Chen, Drese Jeffrey H, Tamhankar Yash, Nair Sankar
School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0100, United States.
Phillips 66 Research Center, Phillips 66 Company, CPL-02-218, Highway 60 & 123, Bartlesville, Oklahoma 74003, United States.
ACS Appl Mater Interfaces. 2020 Jun 17;12(24):27368-27377. doi: 10.1021/acsami.0c06227. Epub 2020 Jun 5.
Metal-organic framework (MOF) membranes have attractive molecular separation properties but require challenging thin-film deposition techniques on expensive/specialty supports to obtain high performance relative to conventional polymer membranes. We demonstrate and analyze in detail the new concept of all-nanoporous hybrid membranes (ANHMs), which combines two or more nanoporous materials of different morphologies into a single membrane without the use of any polymeric materials. This allows access to a previously inaccessible region of very high permeability and selectivity properties, a feature that enables ANHMs to show high performance even when fabricated with simple coating and solvent evaporation methods on low-cost supports. We synthesize several types of ANHMs that combine the MOF material ZIF-8 with the high-silica zeolite MFI (the latter being employed in both nanoparticle and nanosheet forms). We show that continuous ANHMs can be obtained with high (∼50%) volume fractions of both MOF and zeolite components. Analysis of the multilayer microstructures of these ANHMs by multiple techniques allows estimation of the propylene/propane separation properties of individual ANHM layers, providing initial insight into the dramatically increased permeability and selectivity observed in ANHMs in relation to single-phase nanoporous membranes.
金属有机框架(MOF)膜具有吸引人的分子分离特性,但相对于传统聚合物膜而言,要在昂贵的/特殊的支撑体上采用具有挑战性的薄膜沉积技术才能获得高性能。我们详细展示并分析了全纳米多孔混合膜(ANHM)的新概念,该概念将两种或更多种不同形态的纳米多孔材料组合成单一膜,而不使用任何聚合材料。这使得能够进入一个以前无法达到的具有极高渗透性和选择性的区域,这一特性使ANHM即使在低成本支撑体上通过简单的涂覆和溶剂蒸发方法制备时也能表现出高性能。我们合成了几种类型的ANHM,它们将MOF材料ZIF-8与高硅沸石MFI(后者以纳米颗粒和纳米片两种形式使用)相结合。我们表明,可以获得MOF和沸石组分体积分数都很高(约50%)的连续ANHM。通过多种技术对这些ANHM的多层微观结构进行分析,可以估算出各个ANHM层的丙烯/丙烷分离特性,从而初步了解与单相纳米多孔膜相比,ANHM中观察到的渗透率和选择性显著提高的情况。