Science Division, New York University Abu Dhabi, Saadiyat Island, 129188 Abu Dhabi, UAE.
Materials Research Laboratory, University of Nova Gorica, Vipavska 11c, 5270 Ajdovscina, Slovenia.
ACS Appl Mater Interfaces. 2022 Aug 31;14(34):39293-39298. doi: 10.1021/acsami.2c06841. Epub 2022 Aug 22.
Azacalix[]arenes (ACAs) are lesser-known cousins of calix[]arenes that contain amine bridges instead of methylene bridges, so they generally have higher flexibility due to enlarged cavities. Herein, we report a highly substituted cationic azacalix[4]arene-based covalent organic framework () synthesized by the Zincke reaction under microwave irradiation. The current work is a rare example of a synthetic strategy that utilizes the chemical functionalization of an organic macrocycle to constrain its conformational flexibility and, thereby, produce an ordered material. Considering the ACA cavity dimensions, and the density and diversity of the polar groups in , we used it for adsorption of uric acid and creatinine, two major waste products generated during hemodialysis treatment in patients with renal failure. This type of application, which has the potential to save ∼400 L of water per patient per week, has only been recognized in the last decade, but could effectively address the problem of water scarcity in arid areas of the world. Rapid adsorption rates (up to = 2191 g mg min) were observed in our COF, exceeding reported values by several orders of magnitude.
氮杂杯芳烃(ACAs)是杯芳烃的远亲,其分子中含有胺桥而不是亚甲基桥,因此由于空腔增大通常具有更高的灵活性。在此,我们报道了一种通过微波辐射下的津克反应合成的高度取代的基于阳离子氮杂杯[4]芳烃的共价有机骨架()。目前的工作是利用有机大环的化学官能化来限制其构象灵活性并由此产生有序材料的合成策略的罕见实例。考虑到 ACA 空腔尺寸以及极性基团在 中的密度和多样性,我们将其用于吸附尿酸和肌酸,这两种物质是肾衰竭患者血液透析治疗过程中产生的主要废物。这种应用方式有可能为每个患者每周节省约 400 升水,这在过去十年才得到认可,但可以有效解决世界干旱地区的水资源短缺问题。我们的 COF 观察到快速的吸附速率(高达 = 2191 g mg min),超过了报道的几个数量级的值。