Wiegerinck Harm T M, Demirel Özlem H, Zwijnenberg Harmen J, van der Meer Tom, Rijnaarts Timon, Wood Jeffery A, Benes Nieck E
Membrane Science and Technology Cluster, MESA+ Institute for Nanotechnology, University of Twente, 7500AE Enschede, The Netherlands.
ACS Appl Mater Interfaces. 2024 Jun 19;16(24):31703-31708. doi: 10.1021/acsami.4c02882. Epub 2024 Jun 10.
Metal-organic framework (MOF) films can be used in various applications. In this work, we propose a method that can be used to synthesize MOF films localized on a single side of an anion exchange membrane, preventing the transport of the metal precursor via Donnan exclusion. This is advantageous compared to the related contra-diffusion method that results in the growth of a MOF film on both sides of the support, differing in quality on both sides. Our proposed method has the advantage that the synthesis conditions can potentially be tuned to create the optimal conditions for crystal growth on a single side. The localized growth of the MOF is governed by Donnan exclusion of the anion exchange membrane, preventing metal ions from passing to the other compartment, and this leads to a local control of the precursor stoichiometry. In this work, we show that our method can localize the growth of both Cu-BTC and ZIF-8 in water and in methanol, respectively, highlighting that this method can used for preparing a variety of MOF films with varying characteristics using soluble precursors at room temperature.
金属有机框架(MOF)薄膜可用于各种应用。在这项工作中,我们提出了一种方法,可用于合成位于阴离子交换膜单侧的MOF薄膜,通过唐南排斥作用防止金属前驱体传输。与相关的反扩散方法相比,这具有优势,反扩散方法会导致MOF薄膜在支撑体两侧生长,两侧质量不同。我们提出的方法的优点是合成条件有可能被调整,以创造在单侧进行晶体生长的最佳条件。MOF的局部生长受阴离子交换膜的唐南排斥作用控制,防止金属离子进入另一隔室,这导致对前驱体化学计量比的局部控制。在这项工作中,我们表明我们的方法可以分别在水和甲醇中使Cu-BTC和ZIF-8的生长局部化,突出表明该方法可用于在室温下使用可溶性前驱体制备具有不同特性的各种MOF薄膜。