State Key Laboratory of Applied Organic Chemistry, College of Chemistry and Chemical Engineering, Lanzhou University , Lanzhou, Gansu 730000, China.
School of Chemistry and Chemical Engineering, Sun Yat-Sen University , Guangzhou 510275, China.
J Am Chem Soc. 2016 Mar 9;138(9):3031-7. doi: 10.1021/jacs.5b10754. Epub 2016 Feb 29.
Heavy metal ions are highly toxic and widely spread as environmental pollutants. New strategies are being developed to simultaneously detect and remove these toxic ions. Herein, we take the intrinsic advantage of covalent organic frameworks (COFs) and develop fluorescent COFs for sensing applications. As a proof-of-concept, a thioether-functionalized COF material, COF-LZU8, was "bottom-up" integrated with multifunctionality for the selective detection and facile removal of mercury(II): the π-conjugated framework as the signal transducer, the evenly and densely distributed thioether groups as the Hg(2+) receptor, the regular pores facilitating the real-time detection and mass transfer, together with the robust COF structure for recycle use. The excellent sensing performance of COF-LZU8 was achieved in terms of high sensitivity, excellent selectivity, easy visibility, and real-time response. Meanwhile, the efficient removal of Hg(2+) from water and the recycling of COF-LZU8 offers the possibility for practical applications. In addition, X-ray photoelectron spectroscopy and solid-state NMR investigations verified the strong and selective interaction between Hg(2+) and the thioether groups of COF-LZU8. This research not only demonstrates the utilization of fluorescent COFs for both sensing and removal of metal ions but also highlights the facile construction of functionalized COFs for environmental applications.
重金属离子具有高度毒性,并广泛存在于环境污染物中。目前正在开发新的策略来同时检测和去除这些有毒离子。在这里,我们利用共价有机框架(COFs)的固有优势,开发用于传感应用的荧光 COFs。作为概念验证,一种硫醚功能化 COF 材料 COF-LZU8,通过“自下而上”的方式集成多功能性,用于选择性检测和简便去除汞(II):π-共轭骨架作为信号转导器,均匀且密集分布的硫醚基团作为 Hg(2+)受体,规则的孔有利于实时检测和质量传递,以及坚固的 COF 结构可用于回收利用。COF-LZU8 的出色传感性能体现在高灵敏度、优异的选择性、易于观察和实时响应。同时,COF-LZU8 从水中高效去除 Hg(2+)并实现循环利用,为实际应用提供了可能性。此外,X 射线光电子能谱和固态 NMR 研究证实了 Hg(2+)与 COF-LZU8 的硫醚基团之间的强选择性相互作用。这项研究不仅展示了荧光 COFs 在金属离子的传感和去除方面的应用,还突出了功能化 COFs 在环境应用中的简便构建。