Yang Miao, Qiu Fenglei, M El-Sayed El-Sayed, Wang Wenjing, Du Shunfu, Su Kongzhao, Yuan Daqiang
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences Fuzhou 350002 China
College of Chemistry and Materials Science, Fujian Normal University Fuzhou 350007 China.
Chem Sci. 2021 Sep 23;12(40):13307-13315. doi: 10.1039/d1sc04531h. eCollection 2021 Oct 20.
Although porous organic cages (POCs), particularly imine-linked (C[double bond, length as m-dash]N) ones, have advanced significantly over the last few decades, the reversible nature of imine linkages makes them prone to hydrolysis and structural collapse, severely limiting their applications under moist or water conditions. Herein, seven water-stable hydrazone-linked (C[double bond, length as m-dash]N-N) POCs are prepared through a simple coupling of the same supramolecular tetraformylresorcin[4]arene cavitand with different dihydrazide linkers. Their structures are all determined by single-crystal X-ray crystallography, demonstrating rich structural diversity from the [2 + 4] lantern, [3 + 6] triangular prism, and unprecedented [4 + 8] square prism to the extra-large [6 + 12] octahedron. In addition, they respectively exhibit tunable window diameters and cavity volumes ranging from about 5.4 to 11.1 nm and 580 to 6800 Å. Moreover, their application in the water environment for pollutant removal was explored, indicating that they can effectively eliminate various types of contaminants from water, including radionuclide waste, toxic heavy metal ions, and organic micropollutants. This work demonstrates a convenient method for rationally constructing versatile robust POCs and presents their great application potentialities in water medium.
尽管多孔有机笼(POCs),特别是亚胺连接(C=N)的多孔有机笼在过去几十年中有了显著进展,但亚胺连接的可逆性使其易于水解和结构坍塌,严重限制了它们在潮湿或水条件下的应用。在此,通过将相同的超分子四甲酰基间苯二酚[4]芳烃穴状配体与不同的二酰肼连接体进行简单偶联,制备了七种水稳定的腙连接(C=N-N)的POCs。它们的结构均通过单晶X射线晶体学确定,展示了从[2 + 4]灯笼、[3 + 6]三棱柱、前所未有的[4 + 8]方柱到超大的[6 + 12]八面体的丰富结构多样性。此外,它们分别表现出可调的窗口直径和腔体积,范围从约5.4至11.1纳米和580至6800埃。而且,还探索了它们在水环境中去除污染物的应用,表明它们可以有效地从水中消除各种类型的污染物,包括放射性核素废物、有毒重金属离子和有机微污染物。这项工作展示了一种合理构建多功能坚固POCs的简便方法,并展示了它们在水介质中的巨大应用潜力。