Linking Nitrogen-Rich Organic Cages into Isoreticular Covalent Organic Frameworks for Enhancing Iodine Adsorption Capability

吸附 共价键 笼子 共价有机骨架 氮气 结晶度 化学 化学工程 碳化 多孔性 高分子化学 有机化学 结晶学 工程类 组合数学 数学
作者
Ke Cheng,Hailian Li,Zuyong Li,Pei‐Zhou Li,Yanli Zhao
出处
期刊:ACS materials letters [American Chemical Society]
卷期号:5 (6): 1546-1555 被引量:16
标识
DOI:10.1021/acsmaterialslett.3c00213
摘要

By linking a nitrogen-rich organic cage with linear connectors, three cage-based isoreticular covalent organic frameworks, i.e., Cage-IRCOF-1, Cage-IRCOF-2, Cage-IRCOF-3, were successfully designed and synthesized by Schiff-base polycondensation reactions. The structure determination and simulations from powder X-ray diffraction measurements indicated that these COFs have high crystallinity derived from the packing of covalently linked two-dimensional isoreticular layer frameworks. As nitrogen-rich porous materials, iodine capture studies were carried out, proving that they displayed obvious enhancements in iodine uptake as compared with the pristine cage itself. In particular, Cage-IRCOF-1 displayed an iodine adsorption capacity of 262 wt %, which is 12 times higher than the solid packed from the cage itself. Spectral studies revealed that there were strong interactions between the nitrogen-rich groups and the adsorbed iodine species. This work demonstrated that linking the discrete organic cages into reticular crystalline frameworks, effective adsorbents can be fabricated for targeted applications.
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