Lin Shujie, Zhang Ziliang, Gao Di, Chen Longming, Tian Chengyang, Chen Junyi, Meng Qingbin
State Key Laboratory of National Security Specially Needed Medicines, Beijing Institute of Pharmacology and Toxicology Beijing 100850 P. R. China
Nanoscale Adv. 2024 Nov 1;6(23):5827-5832. doi: 10.1039/d4na00667d. eCollection 2024 Nov 19.
Iodine in nuclear waste can cause serious environment pollution and health risks, and has thus driven more development of materials for iodine capture. Herein, a novel porous pillar[6]arene-based polymer (P-P6APs) was easily prepared as a supramolecular adsorbent for iodine a one-step crosslinking reaction between per-hydroxylated pillar[6]arene and decafluorobiphenyl. Nitrogen adsorption tests demonstrated that this material possessed a satisfactory surface area ( = 366 m g) and pore diameter (3.8 nm), which was due to the macrocyclic scaffolds. Compared with commercially available activated carbon, P-P6APs exhibited superior adsorption efficiency toward volatile iodine not only in the solution phase (water and -hexane) but also in the gas phase. This outcome was mainly ascribed to nonspecific adsorption by the pore structure of the crosslinked material coupled with multiple intermolecular binding sites of the macrocyclic scaffold. Moreover, this supramolecular absorbent was recyclable and could be reused 5 times with no obvious loss of performance.
核废料中的碘会造成严重的环境污染并带来健康风险,因此推动了更多碘捕获材料的开发。在此,一种新型的基于柱[6]芳烃的多孔聚合物(P-P6APs)被轻松制备出来,作为碘的超分子吸附剂——通过全羟基化柱[6]芳烃与十氟联苯之间的一步交联反应制备而成。氮气吸附测试表明,由于大环支架结构,该材料具有令人满意的表面积( = 366 m g)和孔径(3.8 nm)。与市售活性炭相比,P-P6APs不仅在溶液相(水和 -己烷)中,而且在气相中对挥发性碘都表现出优异的吸附效率。这一结果主要归因于交联材料的孔结构的非特异性吸附以及大环支架的多个分子间结合位点。此外,这种超分子吸附剂可回收利用,并且可以重复使用5次而性能无明显损失。