College of Science, Department of Chemistry, Rikkyo University, 3-34-1 Nishi-Ikebukuro, 171-8501, Toshima-ku, Tokyo, Japan.
Nippon Soda Co., LTD., 2-2-1 Ohtemachi, 100-8165, Chiyoda-ku, Tokyo, Japan.
Chemistry. 2023 May 2;29(25):e202203442. doi: 10.1002/chem.202203442. Epub 2023 Mar 24.
We have developed highly porous Cu-based metal-organic frameworks (MOFs) using carbazole-type linkers. The novel topological structure of these MOFs was revealed by single-crystal X-ray diffraction analysis. Molecular adsorption/desorption experiments indicated that these MOFs are flexible and change their structure upon adsorption/desorption of organic solvents and gas molecules. These MOFs exhibit unprecedented properties that allow controlling their flexibility by adding a functional group onto the central benzene ring of the organic ligand. For example, the introduction of electron-donating substituents increases the robustness of the resulting MOFs. These MOFs also exhibit flexibility-dependent differences in gas-adsorption and -separation performance. Thus, this study represents the first example of controlling the flexibility of MOFs with the same topological structure via the substituent effect of functional groups introduced into the organic ligand.
我们使用咔唑型连接物开发了高度多孔的基于铜的金属有机骨架(MOFs)。通过单晶 X 射线衍射分析揭示了这些 MOFs 的新颖拓扑结构。分子吸附/解吸实验表明,这些 MOFs 是柔性的,并在有机溶剂和气体分子的吸附/解吸过程中改变其结构。这些 MOFs 表现出前所未有的性质,通过在有机配体的中心苯环上引入官能团来控制其柔性。例如,引入供电子取代基会增加所得 MOFs 的稳定性。这些 MOFs 还表现出与柔性相关的气体吸附和分离性能的差异。因此,这项研究代表了通过引入有机配体的官能团的取代基效应来控制具有相同拓扑结构的 MOFs 柔性的首例实例。