Zhou Wei, Li Aimin, Zhou Min, Xu Yiyao, Zhang Yi, He Qing
State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha, 410082, P. R. China.
College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha, 410081, P. R. China.
Nat Commun. 2023 Sep 4;14(1):5388. doi: 10.1038/s41467-023-41056-5.
Adsorbents widely utilized for environmental remediation, water purification, and gas storage have been usually reported to be either porous or crystalline materials. In this contribution, we report the synthesis of two covalent organic superphane cages, that are utilized as the nonporous amorphous superadsorbents for aqueous iodine adsorption with the record-breaking iodine adsorption capability and selectivity. In the static adsorption system, the cages exhibit iodine uptake capacity of up to 8.41 g g in I aqueous solution and 9.01 g g in I (KI/I) aqueous solution, respectively, even in the presence of a large excess of competing anions. In the dynamic flow-through experiment, the aqueous iodine adsorption capability for I and I can reach up to 3.59 and 5.79 g g, respectively. Moreover, these two superphane cages are able to remove trace iodine in aqueous media from ppm level (5.0 ppm) down to ppb level concentration (as low as 11 ppb). Based on a binding-induced adsorption mechanism, such nonporous amorphous molecular materials prove superior to all existing porous adsorbents. This study can open up a new avenue for development of state-of-the-art adsorption materials for practical uses with conceptionally new nonporous amorphous superadsorbents (NAS).
通常据报道,广泛用于环境修复、水净化和气体储存的吸附剂要么是多孔材料,要么是晶体材料。在本论文中,我们报道了两种共价有机超笼的合成,它们被用作无孔非晶态超级吸附剂,用于吸附水溶液中的碘,具有破纪录的碘吸附能力和选择性。在静态吸附系统中,即使存在大量过量的竞争阴离子,这些笼子在碘水溶液中的碘吸附容量分别高达8.41 g/g,在碘(碘化钾/碘)水溶液中的碘吸附容量高达9.01 g/g。在动态流通实验中,对碘和碘的水溶液碘吸附能力分别可达3.59和5.79 g/g。此外,这两种超笼能够将水介质中的痕量碘从ppm水平(5.0 ppm)降低到ppb水平浓度(低至11 ppb)。基于结合诱导吸附机制,这种无孔非晶态分子材料被证明优于所有现有的多孔吸附剂。这项研究可以为开发具有概念上新的无孔非晶态超级吸附剂(NAS)的实用先进吸附材料开辟一条新途径。