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一种具有开放芘位点的微孔氢键有机框架,通过氢键螺旋链分离,用于高效分离氙和氪。

A Microporous Hydrogen-Bonded Organic Framework with Open Pyrene Sites Isolated by Hydrogen-Bonded Helical Chains for Efficient Separation of Xenon and Krypton.

作者信息

He Lei, Li Yunbin, Li Lu, Wang Zhitao, Chen Yanting, Yuan Furong, Lan Gaoyan, Chen Chenxin, Xiang Shengchang, Chen Banglin, Zhang Zhangjing

机构信息

Fujian Key Laboratory of Polymer Materials, College of Chemistry and Materials Science, Fujian Normal University, Fuzhou, China.

出版信息

Angew Chem Int Ed Engl. 2025 Feb 10;64(7):e202418917. doi: 10.1002/anie.202418917. Epub 2024 Nov 26.

Abstract

Achieving efficient xenon/krypton (Xe/Kr) separation in emerging hydrogen-bonded organic frameworks (HOFs) is highly challenging because of the lack of gas-binding sites on their pore surfaces. Herein, we report the first microporous HOF (HOF-FJU-168) based on hydrogen-bonded helical chains, which prevent self-aggregation of the pyrene core, thereby preserving open pyrene sites on the pore surfaces. Its activated form, HOF-FJU-168a is capable of separating Xe/Kr under ambient conditions while achieving an excellent balance between adsorption capacity and selectivity. At 296 K and 1 bar, the Xe adsorption capacity of HOF-FJU-168a reached 78.31 cm/g, with an Xe/Kr IAST selectivity of 22.0; both values surpass those of currently known top-performing HOFs. Breakthrough experiments confirmed its superior separation performance with a separation factor of 8.6 and a yield of high-purity Kr (>99.5 %) of 184 mL/g. Furthermore HOF-FJU-168 exhibits excellent thermal and chemical stability, as well as renewability. Single-crystal X-ray diffraction and molecular modeling revealed that the unique electrostatic surface potential around the open pyrene sites creates a micro-electric field, exerting a stronger polarizing effect on Xe than on Kr, thereby enhancing host-Xe interactions.

摘要

在新兴的氢键有机框架(HOFs)中实现高效的氙/氪(Xe/Kr)分离极具挑战性,因为其孔表面缺乏气体结合位点。在此,我们报道了首个基于氢键螺旋链的微孔HOF(HOF-FJU-168),该螺旋链可防止芘核的自聚集,从而在孔表面保留开放的芘位点。其活化形式HOF-FJU-168a能够在环境条件下分离Xe/Kr,同时在吸附容量和选择性之间实现出色的平衡。在296 K和1 bar下,HOF-FJU-168a的Xe吸附容量达到78.31 cm/g,Xe/Kr理想吸附溶液理论(IAST)选择性为22.0;这两个值均超过了目前已知性能最佳的HOFs。突破实验证实了其卓越的分离性能,分离因子为8.6,高纯度Kr(>99.5 %)的产率为184 mL/g。此外,HOF-FJU-168具有出色的热稳定性和化学稳定性以及可再生性。单晶X射线衍射和分子模拟表明,开放芘位点周围独特的静电表面电势产生了一个微电场,对Xe的极化作用比对Kr更强,从而增强了主体与Xe的相互作用。

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