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用于增强碘吸附性能的多孔有机笼的合成后修饰

Post-Synthetic Modification of Porous Organic Cages for Enhanced Iodine Adsorption Performance.

作者信息

Mao Qianqian, Yang Siyuan, Zhang Jinjin, Liu Yuanhan, Liu Ming

机构信息

Department of Chemistry, Zhejiang University, Hangzhou, 310058, China.

Hangzhou Global Scientific and Technological Innovation Center (HIC), Zhejiang University, Hangzhou, 311215, China.

出版信息

Adv Sci (Weinh). 2024 Dec;11(45):e2408494. doi: 10.1002/advs.202408494. Epub 2024 Oct 14.

Abstract

The capture of radioactive iodine species from nuclear waste is crucial for environmental protection and human health. Porous organic cages (POCs), an emerging porous material, have showed potential in iodine adsorption due to the advantages of tunable pores and processibility. However, integrating multiple desirable characteristics into a single POC through bottom-up assembly of pre-designed building blocks remains challenging. Post-synthetic modification (PSM) offers an alternative approach, enabling the introduction of various functions into a single POC. Herein, a viable and highly efficient three-step PSM strategy to modify a representative POC (CC3), is presented. The modified POC, OFT-RCC36Br, features a charged confined space, electron-rich heteroatom, and halide ions, exhibiting significantly enhanced iodine vapor uptake compared to the parental cage. The universality of the PSM strategy has been verified by successfully modifying two other POCs. The iodine adsorption behaviors of three modified cage adsorbents in organic solvent and aqueous solution have also been investigated, all of which exhibited improved performance, especially in comparison to ionic cages modified through direct protonation. This work provides an effective PSM strategy for POCs to facilitate iodine adsorption. More importantly, the introduction of a new PSM strategy enriches the functional diversity of POCs, potentially broadening their future applications.

摘要

从核废料中捕获放射性碘物种对于环境保护和人类健康至关重要。多孔有机笼(POCs)作为一种新兴的多孔材料,由于其具有可调节的孔隙和可加工性等优点,在碘吸附方面显示出潜力。然而,通过预先设计的构建块自下而上组装将多种理想特性整合到单个POC中仍然具有挑战性。后合成修饰(PSM)提供了一种替代方法,能够将各种功能引入单个POC中。在此,提出了一种可行且高效的三步PSM策略来修饰代表性的POC(CC3)。修饰后的POC,即OFT-RCC36Br,具有带电的受限空间、富电子杂原子和卤离子,与母体笼相比,其碘蒸气吸收能力显著增强。通过成功修饰另外两种POC验证了PSM策略的通用性。还研究了三种修饰后的笼状吸附剂在有机溶剂和水溶液中的碘吸附行为,所有这些吸附剂均表现出改进的性能,特别是与通过直接质子化修饰的离子笼相比。这项工作为POCs提供了一种有效的PSM策略以促进碘吸附。更重要的是,新PSM策略的引入丰富了POCs的功能多样性,有可能拓宽其未来应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/196b/11615766/1d565f207ad3/ADVS-11-2408494-g007.jpg

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