杯芳烃
多孔性
超分子化学
材料科学
化学工程
化学
有机化学
复合材料
分子
工程类
作者
Errui Li,Arvind Ganesan,Hongjun Liu,Alexander S. Ivanov,Lilin He,Phattananawee Nalaoh,David M. Jenkins,Carlos A. Steren,Narges Mokhtarinori,Jian Zhi Hu,Bo Li,De‐en Jiang,Shannon M. Mahurin,Zhenzhen Yang,Sheng Dai,Sheng Dai
出处
期刊:Angewandte Chemie
[Wiley]
日期:2025-01-06
卷期号:64 (11): e202421615-e202421615
被引量:10
标识
DOI:10.1002/anie.202421615
摘要
Abstract Sub‐Ångstrom‐level porosity engineering, which is appealing in gas separations, has been demonstrated in solid carbon, polymer, and framework materials but rarely achieved in the liquid phase. In this work, a gas molecular sieving effect in the liquid phase at sub‐5 Ångstrom scale is created via sophisticated porosity tuning in calixarene‐derived porous liquids (PLs). Type II PLs are constructed via supramolecular complexation between the sodium salts of calixarene derivatives and crown ether solvents. The chemical structure variation and assembly behavior of the porous host upon PL construction are monitored by spectroscopy‐, X‐ray‐, and neutron‐scattering techniques. The presence of permanent porosity in calixarene‐derived PLs is verified by pressure swing gas uptake, altered CO 2 physisorption behavior, and molecular simulations. Sub‐5 Ångstrom porosity tuning within the PL phase is achieved by introducing bulky substituted groups on the benzene ring of the calixarene host, which then greatly affects the dynamic motion and transport behavior of CO 2 molecules and the Xe uptake performance. The approach being demonstrated in this work represents a promising pathway to tune and leverage the porosity effect for enhanced gas uptake capacity and selectivity in liquid sorbents.
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