Cai Youlie, Gao Junkuo, Li Jing-Hong, Liu Puxu, Zheng Yanchun, Zhou Wei, Wu Hui, Li Libo, Lin Rui-Biao, Chen Banglin
School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou, 310018, China.
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, Sun Yat-Sen University, Guangzhou, 510275, China.
Angew Chem Int Ed Engl. 2023 Sep 11;62(37):e202308579. doi: 10.1002/anie.202308579. Epub 2023 Aug 4.
Developing hydrogen-bonded organic frameworks (HOFs) that combine functional sites, size control, and storage capability for targeting gas molecule capture is a novel and challenging venture. However, there is a lack of effective strategies to tune the hydrogen-bonded network to achieve high-performance HOFs. Here, a series of HOFs termed as HOF-ZSTU-M (M=1, 2, and 3) with different pore structures are obtained by introducing structure-directing agents (SDAs) into the hydrogen-bonding network of tetrakis (4-carboxyphenyl) porphyrin (TCPP). These HOFs have distinct space configurations with pore channels ranging from discrete to continuous multi-dimensional. Single-crystal X-ray diffraction (SCXRD) analysis reveals a rare diversity of hydrogen-bonding models dominated by SDAs. HOF-ZSTU-2, which forms a strong layered hydrogen-bonding network with ammonium (NH ) through multiple carboxyl groups, has a suitable 1D "pearl-chain" channel for the selective capture of propylene (C H ). At 298 K and 1 bar, the C H storage density of HOF-ZSTU-2 reaches 0.6 kg L , representing one of the best C H storage materials, while offering a propylene/propane (C H /C H ) selectivity of 12.2. Theoretical calculations and in situ SCXRD provide a detailed analysis of the binding strength of C H at different locations in the pearl-chain channel. Dynamic breakthrough tests confirm that HOF-ZSTU-2 can effectively separate C H from multi-mixtures.
开发兼具功能位点、尺寸可控性以及针对目标气体分子捕获的存储能力的氢键有机框架(HOF)是一项新颖且具有挑战性的工作。然而,目前缺乏有效的策略来调控氢键网络以实现高性能的HOF。在此,通过将结构导向剂(SDA)引入四(4 - 羧基苯基)卟啉(TCPP)的氢键网络中,获得了一系列具有不同孔结构的HOF,命名为HOF - ZSTU - M(M = 1、2和3)。这些HOF具有独特的空间构型,其孔道范围从离散的到连续的多维结构。单晶X射线衍射(SCXRD)分析揭示了由SDA主导的罕见多样的氢键模型。HOF - ZSTU - 2通过多个羧基与铵(NH )形成强层状氢键网络,具有适合选择性捕获丙烯(C H )的一维“珍珠链”通道。在298 K和1 bar下,HOF - ZSTU - 2的C H 存储密度达到0.6 kg L ,是最佳的C H 存储材料之一,同时丙烯/丙烷(C H /C H )选择性为12.2。理论计算和原位SCXRD对珍珠链通道中不同位置的C H 结合强度进行了详细分析。动态突破测试证实HOF - ZSTU - 2能够有效地从多组分混合物中分离出C H 。