Centre for Membrane Separations, Adsorption, Catalysis and Spectroscopy for Sustainable Solutions (cMACS) , KU Leuven , Celestijnenlaan 200F , Box 2454, 3001 Heverlee , Vlaams-Brabant , Belgium.
ACS Appl Mater Interfaces. 2019 Nov 27;11(47):44792-44801. doi: 10.1021/acsami.9b19774. Epub 2019 Nov 15.
Modulator-mediated functionalization (MoFu) is introduced as a new and versatile platform tool to improve the separation performance of metal-organic framework (MOF)-based membranes, exemplified here by the creation of mixed-matrix membranes (MMMs) with enhanced CO separation efficiency. The unique structure of MOF-808 allows incorporation of CO-philic modulators in the MOF framework during a one-pot synthesis procedure in water, thus creating a straightforward way to functionalize both MOF and corresponding MMM. As a proof of concept, a series of fluorinated carboxylic acids [trifluoroacetic acid (TFA), pentafluoropropionic acid (PFPA), and heptafluorobutyric acid (HFBA)] and nonfluorinated alkyl carboxylic acids (acetic acid (AA), propionic acid (PA), and butyric acid (BA)) were used as a modulator during MOF-808 synthesis. Two of the best MMMs prepared with 30 wt % MOF-TFA (100% increase in CO/CH separation factor, 350% increase in CO permeability) and 10 wt % MOF-PFPA (140% increase in CO/CH separation factor, 100% increase in CO permeability) scored very close to or even crossed the 2008 and 2018 upper bound limits for CO/CH. Because of its facile functionalization (and its subsequent excellent performance), MOF-808 is proposed as an alternative for widely used UiO-66, which is, from a functionalization point-of-view and despite its widespread use, a rather limited MOF.
调节剂介导的功能化(MoFu)被引入作为一种新的多功能平台工具,以提高金属有机骨架(MOF)基膜的分离性能,这里通过创建具有增强的 CO 分离效率的混合基质膜(MMM)来说明。MOF-808 的独特结构允许在水的一锅合成过程中在 MOF 骨架中掺入 CO 亲合调节剂,从而为 MOF 和相应的 MMM 的功能化创造了一种简单的方法。作为概念验证,一系列氟化羧酸[三氟乙酸(TFA)、五氟丙酸(PFPA)和全氟丁酸(HFBA)]和非氟化烷基羧酸[乙酸(AA)、丙酸(PA)和丁酸(BA)]被用作 MOF-808 合成过程中的调节剂。用 30wt% MOF-TFA(CO/CH 分离因子增加 100%,CO 渗透率增加 350%)和 10wt% MOF-PFPA(CO/CH 分离因子增加 140%,CO 渗透率增加 100%)制备的两种最佳 MMM 非常接近甚至超过了 2008 年和 2018 年 CO/CH 的上限。由于其易于功能化(及其随后的优异性能),MOF-808 被提议作为广泛使用的 UiO-66 的替代品,从功能化的角度来看,尽管 UiO-66 被广泛使用,但它是一种相当有限的 MOF。