Matthys Gilles, Laemont Andreas, De Geyter Nathalie, Morent Rino, Lavendomme Roy, Van Der Voort Pascal
Center for Ordered Materials, Organometallics and Catalysis (COMOC), Department of Chemistry, Ghent University, Krijgslaan 281- S3, Ghent, 9000, Belgium.
Research Unit Plasma Technology (RUPT), Department of Applied Physics, Ghent University, Sint-Pietersnieuwstraat 41, B4, Ghent, 9000, Belgium.
Small. 2024 Nov;20(47):e2404994. doi: 10.1002/smll.202404994. Epub 2024 Aug 21.
The development of a high-performing adsorbent that can capture both iodine vapor from volatile nuclear waste and traces of iodine species from water is an important challenge, especially in industrially relevant process conditions. This study introduces novel imidazopyridinium-based covalent organic frameworks (COFs) through post-modification of a picolinaldehyde-based imine COF. These COFs demonstrate excellent iodine adsorption capacity, adsorption kinetics, and a high stability/recyclability in both vapor and water phases. Notably, one imidazopyridinium COF exhibits gaseous iodine uptake of 21 wt.% under dynamic adsorption conditions at 150 °C and a relative humidity of 50%, surpassing the performance of the currently used silver-based zeolite adsorbents (Ag@MOR (17wt.%)). Additionally, the same imidazopyridinium COFs can efficiently remove iodine species at a low concentration from aqueous solution. Seawater containing triiodide ions treated under dynamic flow-through conditions resulted in decreased concentrations down to the ppb level. The adsorption mechanisms for iodine and polyiodide species are elucidated for the imine COF and imidazopyridinium COFs; involving halogen bonding, hydrogen bonding, and charge-transfer complexes.
开发一种高性能吸附剂,使其既能捕获挥发性核废料中的碘蒸气,又能从水中捕获痕量碘物种,这是一项重大挑战,尤其是在与工业相关的工艺条件下。本研究通过对基于吡啶甲醛的亚胺共价有机框架(COF)进行后修饰,引入了新型基于咪唑并吡啶鎓的共价有机框架(COF)。这些COF在气相和水相中均表现出优异的碘吸附容量、吸附动力学以及高稳定性/可回收性。值得注意的是,一种咪唑并吡啶鎓COF在150°C和50%相对湿度的动态吸附条件下,气态碘吸附量达到21 wt.%,超过了目前使用的银基沸石吸附剂(Ag@MOR(17wt.%))的性能。此外,相同的咪唑并吡啶鎓COF能够从水溶液中高效去除低浓度的碘物种。在动态流通条件下处理含三碘离子的海水,可使浓度降低至ppb水平。对亚胺COF和咪唑并吡啶鎓COF的碘和多碘物种吸附机制进行了阐释;涉及卤键、氢键和电荷转移络合物。