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用于CO/CH分离的混合基质膜中锆基金属有机笼的封装工程

Packing Engineering of Zirconium Metal-Organic Cages in Mixed Matrix Membranes for CO/CH Separation.

作者信息

Yang Ziqi, Peh Shing Bo, Xi Shibo, Lu Yanqiu, Liu Qixing, Zhao Dan

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore, 117585, Singapore.

Institute of Sustainability for Chemicals, Energy and Environment, Agency for Science, Technology and Research, Jurong Island, 627833, Singapore.

出版信息

Angew Chem Int Ed Engl. 2025 Feb 3;64(6):e202418098. doi: 10.1002/anie.202418098. Epub 2025 Jan 14.

Abstract

Metal-organic cages (MOCs) have been considered as emerging zero-dimensional (0D) porous fillers to generate molecularly homogeneous MOC-based membrane materials. However, the discontinuous pore connectivity and low filler concentrations limit the improvement of membrane separation performance. Herein, we propose the dimension augmentation of MOCs in membranes using three-dimensional (3D) supramolecular MOC networks as filler materials in mixed matrix membranes (MMMs). We further explore the packing engineering of MOC networks to produce distinct polymorphs (α and β phases) for tailoring membrane performance. Synchrotron X-ray absorption and positron annihilation lifetime spectroscopy were employed to differentiate distinct MOC polymorphous networks within membranes. Gas permeation tests revealed that the corresponding MMMs showed superior CO/CH separation performance, exceeding the Robeson upper bound. Our proposed approach is expected to enrich the repertoire of reticular chemistry pertaining to molecular-based networks.

摘要

金属有机笼(MOCs)被认为是新兴的零维(0D)多孔填料,用于制备分子均匀的基于MOC的膜材料。然而,不连续的孔连通性和低填料浓度限制了膜分离性能的提升。在此,我们提出在混合基质膜(MMMs)中使用三维(3D)超分子MOC网络作为填料材料来增加膜中MOC的维度。我们进一步探索MOC网络的堆积工程,以产生不同的多晶型物(α相和β相)来定制膜性能。利用同步加速器X射线吸收和正电子湮没寿命谱来区分膜内不同的MOC多晶型网络。气体渗透测试表明,相应的MMMs表现出优异的CO/CH分离性能,超过了罗伯逊上限。我们提出的方法有望丰富与分子基网络相关的网状化学方法。

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