Xia Ting, Wu Yuyang, Ji Taotao, Hu Wenjing, Yu Kunpeng, He Xinyu, Yin Ben Hang, Liu Yi
State Key Laboratory of Fine Chemicals School of Chemical Engineering Dalian University of Technology Dalian China.
Faculty of Engineering Robinson Research Institute Victoria University of Wellington Wellington New Zealand.
Smart Mol. 2025 Mar 7;3(2):e20240066. doi: 10.1002/smo.20240066. eCollection 2025 Jun.
Metal-organic framework (MOF) has been widely used as filler of mixed-matrix membranes (MMMs) because of their tunable pore sizes, large surface areas, and rich functional groups. However, a relatively high diffusion barrier in the framework of bulk MOF fillers inevitably reduces gas permeability. Introduction of hierarchically porous structure represents an effective method for reducing guest diffusion resistance with no compromise in gas selectivity. In this study, hierarchical ZIF-8 (H-ZIF-8) was prepared using carboxylated polystyrene (PS-COOH) nanospheres as a hard template. Owing to the introduction of carboxyl groups, electrostatic interaction between PS nanospheres and Zn ions is enhanced, facilitating uniform embedment of PS nanospheres in bulk ZIF-8 filler. After dissolution of PS-COOH nanospheres with dimethylformamide solvents, H-ZIF-8 with tunable textural properties is readily obtained. Gas permeation results indicate that compared with bulk ZIF-8 filler, fast diffusion pathways for guest molecules are established in H-ZIF-8 filler, resulting in a CO/N separation factor (SF) of 48.77 with CO permeability of 645.76 Barrer in terms of H-ZIF-8 MMMs with 6 wt % loading, which well exceeds the 2008 Robenson upper bound for CO/N gas pair, thus showing promising prospects for high-efficiency CO capture from flue gas.
金属有机框架材料(MOF)因其孔径可调、比表面积大以及官能团丰富,已被广泛用作混合基质膜(MMM)的填料。然而,块状MOF填料框架中相对较高的扩散势垒不可避免地降低了气体渗透率。引入分级多孔结构是一种在不牺牲气体选择性的情况下降低客体扩散阻力的有效方法。在本研究中,以羧化聚苯乙烯(PS-COOH)纳米球为硬模板制备了分级ZIF-8(H-ZIF-8)。由于羧基的引入,增强了PS纳米球与锌离子之间的静电相互作用,有利于PS纳米球均匀嵌入块状ZIF-8填料中。用二甲基甲酰胺溶剂溶解PS-COOH纳米球后,很容易获得具有可调织构性质的H-ZIF-8。气体渗透结果表明,与块状ZIF-8填料相比,H-ZIF-8填料中为客体分子建立了快速扩散通道,对于负载量为6 wt%的H-ZIF-8 MMMs,其CO/N分离因子(SF)为48.77,CO渗透率为645.76 Barrer,这远远超过了2008年Robenson对于CO/N气体对的上限,因此在从烟道气中高效捕获CO方面显示出广阔的前景。