选择性
材料科学
共价键
金属有机骨架
氢键
微型多孔材料
化学工程
共价有机骨架
氢
纳米技术
气体分离
吸附
分子
多孔性
化学
有机化学
复合材料
催化作用
膜
工程类
生物化学
作者
Furong Yuan,Yunbin Li,Zhen Yuan,Lu Li,Chenxin Chen,Lei He,Hongyu Lin,Xi Fan,Banglin Chen,Shengchang Xiang,Zhangjing Zhang
出处
期刊:Angewandte Chemie
[Wiley]
日期:2024-10-21
卷期号:64 (2): e202414215-e202414215
被引量:18
标识
DOI:10.1002/anie.202414215
摘要
Reticular chemistry and pore engineering have garnered significant advancements in metal-organic frameworks and covalent organic frameworks, leveraging robust metal-coordination and covalent bonds. However, these achievements remain elusive in hydrogen-bonded organic frameworks, hindered by their inherent weakness in hydrogen bonding. Herein, we strategically manipulate the porosity of hydrogen-bonded frameworks through a grafting approach, culminating in the synthesis of two isomorphic HOFs, HOF-FJU-99 and HOF-FJU-100, with distinct pore environments. Remarkably, HOF-FJU-100, with its microporous architecture, not only showcases exceptional stability but also achieves unparalleled separation efficiency and ultrahigh selectivity for C2H2/CO2 mixtures (50/50, v/v) under ambient conditions. Its IAST selectivity value of 201 stands as a benchmark, towering over all previously reported HOFs. The pore of HOF-FJU-100 boasts an electrostatic potential highly favourable for C2H2 adsorption, as evidenced by single crystal X-ray diffraction analysis revealing multiple hydrogen bonding interactions between C2H2 molecules and the framework. In situ gas-carrier powder X-ray diffraction analysis underscores the adaptability of pore structure, dynamically adjusting its orientation in response to C2H2, thereby enabling a highly efficient and specific separation of C2H2/CO2 mixtures through specific adsorptive interactions.
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